Satchidananda Panda
Salk Institute for Biological Studies
Satchidananda Panda is a professor in the Regulatory Biology Laboratory at the Salk Institute for Biological Studies specializing in chronobiology and circadian rhythms. His research explores the genetic, genomic, and biochemical mechanisms governing biological day-night cycles, including retinal light sensing through melanopsin. His published work focuses extensively on time-restricted eating and meal timing, investigating its effects on weight loss, sleep quality, and metabolic outcomes such as glycemic control in obesity and type 2 diabetes.
38 claims checked on air: 2 context 4 contradicted 25 supported 7 unverified
What they said on air
The human brain has a narrow window in the first half of the day during which cognitive and problem-solving abilities peak.
"it also has a narrow window in the first half of the day when it has the best cognitive ability, problem-solving ability" (said at 0:03:08)
The claim that the human brain has a universal narrow morning window when cognitive and problem-solving abilities peak is contradicted by chronobiology research. Systematic reviews and empirical studies show that diurnal variations in cognitive function depend heavily on individual chronotype (the "synchrony effect"), task domain, and age. While morning-type individuals often perform better earlier in the day, evening types peak in the late afternoon or evening. Furthermore, reviews of basic attentional and executive processes indicate that many cognitive variables (such as reaction time, alertness, and sustained attention) reach higher levels in the afternoon and evening rather than during a narrow morning window.
- contradicts: Circadian Rhythms in Attention. (The Yale journal of biology and medicine 2019) · cited 104x in the literature
"The components of attention reach their lowest levels during nighttime and early hours in the morning, better levels occur around noon, and even higher levels can be observed during afternoon and evening hours. However, this time course can be modulated by chronotype, sleep deprivation, age, or drugs." (abstract, passage verified)
pubmed - contradicts: Diurnal variation in variables related to cognitive performance: a systematic review. (Sleep & breathing = Schlaf & Atmung 2024) · cited 30x in the literature
"The type of cognitive function was a determining factor as to whether the performance was better in the morning, evening, or afternoon. Although some studies did not establish TOD differences, reaction time and levels of accuracy were highest in the evening." (abstract, results, passage verified)
pubmedfull study (doi) - contradicts: Chronotype and synchrony effects in human cognitive performance: A systematic review. (Chronobiology international 2025) · cited 12x in the literature
"There was evidence from 29 (45.31%) of 64 studies involving adults aged 18-45 y of a synchrony effect (i.e. superior performance at optimal ToD) in morning and/or evening types, mostly in attention, inhibition, and memory." (abstract, results, passage verified)
pubmedfull study (doi)
Caffeine increases arousal but does not restore clear cognitive thinking after sleep deprivation.
"Caffeine just wakes up our brain, but it doesn't make us think clearly, and those experiments have been done extensively." (said at 0:03:30)
Extensive experimental literature shows that caffeine reliably restores simple arousal, alertness, and psychomotor vigilance in sleep-deprived individuals, but largely fails to restore higher-order cognitive capacities and complex decision-making. Randomized controlled trials evaluating complex cognitive control (such as procedural placekeeping and executive function tasks) confirm that while caffeine counteracts deficits in vigilant attention, it does not significantly rescue higher-order cognitive errors caused by sleep deprivation.
- supports: Adenosine, caffeine, and performance: from cognitive neuroscience of sleep to sleep pharma… (Current topics in behavioral neurosciences 2015) · cited 104x in the literature
"Caffeine--the most often consumed stimulant in the world--blocks adenosine receptors and normally attenuates the consequences of sleep deprivation on arousal, vigilance, and attention. Nevertheless, caffeine cannot substitute for sleep, and is virtually ineffective in mitigating the impact of severe sleep loss on higher-order cognitive functions." (abstract, conclusions, passage verified)
pubmedfull study (doi) - supports: Caffeine selectively mitigates cognitive deficits caused by sleep deprivation. (Journal of experimental psychology. Learning, memory, and cognition 2021) · cited 12x in the literature
"Caffeine counteracted this impairment in vigilant attention but did not significantly affect placekeeping for most participants... suggesting that caffeine has limited potential to reduce procedural error rates in occupational settings." (abstract, results)
pubmedfull study (doi)
Almost every neurotransmitter, its receptor, or its recycling system exhibits a circadian rhythm.
"almost every neurotransmitter has a circadian rhythm. Um, when I say every neurotransmitter, it's not only the neurotransmitter, it may be the receptor that receives the signal from neurotransmitter, or the system that recycles the neurotransmitter." (said at 0:04:15)
Extensive neurobiological research demonstrates that major neurotransmitter systems—including monoamines (dopamine, serotonin, norepinephrine), glutamate, GABA, and acetylcholine—exhibit circadian and diurnal oscillations across their synthesis, extracellular release, post-synaptic receptor expression, and transporter-mediated reuptake/recycling systems, regulated bidirectionally by central and local molecular circadian clocks.
Melanopsin was discovered as a circadian photopigment in 2001 by three independent research groups.
"Yeah, so this discovery of melanopsin, of the blue light receptor, was considered to be one of the top 10 breakthroughs of the year in 2001 when three different labs, including mine, we discovered it." (said at 0:08:46)
The substantive claim is accurate: melanopsin was identified as the circadian photopigment in intrinsically photosensitive retinal ganglion cells (ipRGCs) by multiple independent research teams (including Berson et al., Hattar et al., Panda et al., and Ruby et al.), and Science recognized this discovery among the top scientific breakthroughs. However, these landmark functional papers and the Science 'Breakthrough of the Year' recognition occurred in 2002, not 2001.
- supports: Melanopsin-containing retinal ganglion cells: architecture, projections, and intrinsic pho… (Science (New York, N.Y.) 2002) · cited 2756x in the literature
"In mice heterozygous for tau-lacZ targeted to the melanopsin gene locus, beta-galactosidase-positive RGC axons projected to the SCN and other brain nuclei involved in circadian photoentrainment or the pupillary light reflex. Rat RGCs that exhibited intrinsic photosensitivity invariably expressed melanopsin. Hence, melanopsin is most likely the visual pigment of phototransducing RGCs that set the circadian clock" (abstract, results, passage verified)
pubmedfull study (doi) - supports: Role of melanopsin in circadian responses to light. (Science (New York, N.Y.) 2002) · cited 648x in the literature
"Melanopsin has been proposed as an important photoreceptive molecule for the mammalian circadian system. Its importance in this role was tested in melanopsin knockout mice... Although melanopsin is not essential for the circadian clock to receive photic input, it contributes significantly to the magnitude of photic responses." (abstract, results)
pubmedfull study (doi) - supports: Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. (Science (New York, N.Y.) 2002) · cited 864x in the literature
"Melanopsin (Opn4), an opsin-based photopigment, is a primary candidate for photoreceptor-mediated entrainment. To investigate the functional role of melanopsin in light resetting of the oscillator, we generated melanopsin-null mice (Opn4-/-)... highlighting the critical role of melanopsin in circadian photoentrainment in mammals." (abstract, results, passage verified)
pubmedfull study (doi)
Melanopsin in the retina is a blue-light photopigment with a peak sensitivity range between 450 nm and 500 nm.
"These are called melanopsin, or blue-light-sensing light sensors, that are present in our retina. These are not necessary for seeing the outside world, but these light sensors sense blue light. And why blue light? Because the sunlight is the best source of blue light. When we say blue, it's around 450 nanometer to 500 nanometer, that range." (said at 0:09:10)
Melanopsin is an opsin-based photopigment expressed in intrinsically photosensitive retinal ganglion cells (ipRGCs) in the retina. These cells mediate non-image-forming visual functions, including circadian photoentrainment and the pupillary light reflex. Experimental photobiological measurements consistently establish that melanopsin exhibits peak spectral sensitivity (λmax) in the blue light range, specifically around ~480 nm (within the 450–500 nm band).
The light intensity during a full moon is insufficient to activate melanopsin and reset the circadian clock.
"as for example, in a full moon night, your regular light sensors can help you find a way or you can take a walk, but that level of light is not enough to activate melanopsin. So that means if you stay awake and you are taking a night hike in a full moon night, it's not going to reset your circadian clock." (said at 0:09:43)
Human circadian photoentrainment and intrinsic melanopsin activation require substantially higher light levels and longer exposures than full moonlight provides (which typically measures under 0.3 to 1 lux). In human circadian biology, melanopsin-expressing intrinsically photosensitive retinal ganglion cells (ipRGCs) act primarily as high-irradiance detectors, with human circadian phase shifting requiring sustained light exposures of substantial intensity (typically upwards of tens to hundreds of lux).
- supports: Circadian Photoentrainment in Mice and Humans. (Biology 2020) · cited 175x in the literature
"Such an integration of signals enables the rods to detect dim light, the cones to detect higher light intensities and the integration of intermittent light exposure, whilst melanopsin measures bright light over extended periods of time. Although photoreceptor mechanisms are similar, sensitivity thresholds differ markedly between mice and humans. Mice can entrain to light at approximately 1 lux for a few minutes, whilst humans require light at high irradiance (>100's lux) and of a long duration (>30 min)." (abstract, results, passage verified)
pubmedfull study (doi)
Sitting next to a large window in the morning provides approximately 1,000 lux of daylight exposure.
"if you are sitting next to a window, large window, and having your breakfast, although you don't have sunlight falling on your eyes, you still get around 1,000 lux of daylight." (said at 0:12:40)
No published record matching the claim that sitting next to a large window during morning hours provides approximately 1,000 lux of daylight exposure was located; this does not prove the claim false.
Looking at the sky on a sunny day exposes the eyes to between 100,000 and 200,000 lux of light.
"if you are outside on a sunny day in California or a sunny day in any place, and if you're looking at the sky, not actually looking at the sun, you get somewhere between 100,000 to 200,000 lux of light." (said at 0:14:40)
No published record matching the claim that looking at the sky on a sunny day without looking directly at the sun exposes the eyes to between 100,000 and 200,000 lux was located; this does not prove the claim false.
Driving horizontally inside a car or standing outside on a cloudy day provides between 5,000 and 10,000 lux of light.
"if you're inside your car and there is no direct sunlight falling on your face or inside your car, and you're just driving looking horizontally, then you're getting somewhere between 5,000 to 10,000 lux of light, which is similar to standing outside your car on a cloudy day, that's also 5,000 to 10,000 lux of light." (said at 0:15:00)
The speaker's estimate that daytime outdoor light on an overcast or cloudy day (and indirect natural light inside a vehicle looking through clear glass) is roughly in the range of 5,000 to 10,000+ lux aligns with standard daylight photometric values. In photobiology and photodynamic therapy literature, outdoor illuminance under overcast or cloudy skies typically ranges from several thousand up to around 20,000 lux depending on cloud cover and solar elevation, far exceeding typical indoor artificial illumination (often 100 to 500 lux).
Melatonin supplement use increased by approximately 40% to 60% over a recent multi-year period.
"and maybe that's one reason why we have seen almost 40 to 60% rise in melatonin use in the last couple of years alone." (said at 0:17:38)
Nationally representative survey data from the National Health and Nutrition Examination Survey (NHANES) demonstrate significant increases in melatonin supplement use among US adults in recent years, consistent with reported substantial multi-year surges in prevalence and consumption.
Between 70% and 90% of an oral melatonin dose is metabolized by the liver and kidney within one hour.
"when we take a melatonin pill, nearly 70 to 90% of it is broken down in the liver and kidney within an hour." (said at 0:19:15)
Pharmacokinetic studies in humans demonstrate that oral melatonin has an absolute bioavailability of approximately 15% (range typically 10–30%) due to extensive first-pass hepatic metabolism (principally 6-hydroxylation via CYP1A2 followed by conjugation and renal excretion). In addition, melatonin has a short elimination half-life of roughly 30 to 50 minutes, meaning the majority of an immediate-release oral dose is cleared within an hour.
Clinical studies show supplemental melatonin improves sleep latency but does not reliably sustain sleep throughout the night.
"melatonin in experimental, like in clinical studies, has been shown to improve sleep latency, so that means it can help people to fall asleep, but it may not be that good in sustaining sleep throughout the night, at least that's what the clinical studies have shown." (said at 0:19:35)
Multiple systematic reviews and meta-analyses of randomized, placebo-controlled trials confirm that exogenous melatonin consistently reduces sleep onset latency (by approximately 5 to 7 minutes), demonstrating its primary efficacy in helping individuals fall asleep. In contrast, its impact on sleep maintenance and total sleep time across the night is modest and less consistent (e.g., an average increase in total sleep time of only ~8 minutes), largely related to its rapid clearance and short half-life unless specialized prolonged-release formulations are used.
Endogenous melatonin begins rising roughly two hours before habitual sleep time, peaks about one hour into sleep, and reaches its lowest level about two hours after waking.
"our endogenous melatonin actually rises roughly a couple of hours before our habitual sleep time. It slowly rises and then it reaches almost its peak in 1 hour into our sleep and maintains that peak throughout the night, and after we wake up around that time, it begins to decline and it goes down to its lowest plateau, lowest level, maybe 2 hours after we wake up." (said at 0:20:10)
The speaker's description of endogenous melatonin kinetics contains substantial inaccuracies regarding peak and decline timing. While dim light melatonin onset (DLMO) does typically occur roughly 1.5 to 2 hours before habitual sleep onset, endogenous melatonin does not peak within one hour of sleep onset or maintain a flat plateau throughout the night. Instead, circadian melatonin secretion follows a bell-shaped curve that peaks near the middle of the biological night (typically between 02:00 and 04:00, or roughly 3–5 hours after sleep onset). Furthermore, melatonin levels begin their steep decline during the second half of the sleep period—hours before waking—rather than beginning to decline only after waking.
- contradicts: Diurnal preference, sleep habits, circadian sleep propensity and melatonin rhythm in healt… (Neuroscience letters 2000) · cited 91x in the literature
"The intervals between habitual sleep mid-point and melatonin peak time and between habitual sleep mid-point and sleep propensity onset time were significantly longer in morning-preference subjects than in evening-preference subjects (P<0.05)." (abstract, results, passage verified)
pubmedfull study (doi) - supports: Assessment of dim light melatonin onset based on plasma and saliva samples. (Chronobiology international 2022) · cited 17x in the literature
"Dim light melatonin onset (DLMO) is considered to be the most accurate objective marker for assessing the circadian phase... The mean time of the DLMO in the plasma was 21:30 ± 0:45 hours, and in the saliva was as follows: 21:34 ± 1:00 hours." (abstract, results)
pubmedfull study (doi) - contradicts: Indirect Effect Model with Surge Function for Describing Melatonin Circadian Rhythm: Quant… (Neuroendocrinology 2025)
"The model estimates a population typical value (relative standard error %) of amplitude, 7.95 (15.47%); peak time, 23:59 (4.13%); peak width, 4.12 (5.78%); elimination rate constant, 1.23 h-1 (21.82%); baseline melatonin concentration, 3.21 pg/mL (23.27%)." (abstract, results, passage verified)
pubmedfull study (doi)
Four human genetic studies published in 2009 showed that genetic variants in the melatonin receptor gene MTNR1B are associated with elevated fasting blood glucose and increased diabetes risk.
"in 2009, simultaneously four different papers came out from human genetic studies showing that people with diabetes or increased fasting blood glucose level have a polymorphism or mutation in a melatonin receptor gene." (said at 0:22:35)
In 2009, multiple independent human genome-wide association and replication studies (including landmark papers in Nature Genetics, Diabetologia, and Diabetes) demonstrated that common genetic variants in or near MTNR1B (encoding melatonin receptor 1B) are robustly associated with elevated fasting plasma glucose levels and an increased risk of type 2 diabetes across diverse populations.
- supports: Variants in MTNR1B influence fasting glucose levels. (Nature genetics 2009) · cited 754x in the literature
"Variants in the gene encoding melatonin receptor 1B (MTNR1B) were consistently associated with fasting glucose across all ten studies. The strongest signal was observed at rs10830963, where each G allele... was associated with an increase of 0.07... mmol/l in fasting glucose levels... The same allele was associated with an increased risk of type 2 diabetes (odds ratio = 1.09...)" (abstract, results, passage verified)
pubmedfull study (doi) - supports: A variant near MTNR1B is associated with increased fasting plasma glucose levels and type … (Nature genetics 2009) · cited 612x in the literature
"In genome-wide association (GWA) data from 2,151 nondiabetic French subjects, we identified rs1387153, near MTNR1B (which encodes the melatonin receptor 2 (MT2)), as a modulator of fasting plasma glucose... In European populations, the rs1387153 T allele is associated with increased FPG... type 2 diabetes (T2D) risk (odds ratio (OR) = 1.15..." (abstract, results, passage verified)
pubmedfull study (doi) - supports: A common variant in MTNR1B, encoding melatonin receptor 1B, is associated with type 2 diab… (Diabetologia 2009) · cited 108x in the literature
"The genetic variant rs10830963 was associated with an increased risk of type 2 diabetes in our Han Chinese cohort (OR 1.16, 95% CI 1.03-1.31, p = 0.015). As previously described, the risk variant was also associated with increased fasting plasma glucose, showing an increase of 0.068 mmol/l..." (abstract, results, passage verified)
pubmedfull study (doi)
Melatonin reduces the responsiveness of pancreatic beta-islet cells to glucose, decreasing insulin secretion.
"melatonin, just like it makes our brain to sleep, it also makes your pancreas to sleep or islet cells to sleep. That means it makes these insulin-producing cells less responsive to glucose so that they don't produce as much insulin as they should when we eat something that has carbohydrate or glucose." (said at 0:23:25)
Substantial clinical and experimental evidence demonstrates that melatonin acts on pancreatic beta cells via melatonin receptors (particularly MTNR1B/MT2) to suppress glucose-stimulated insulin secretion. In human randomized crossover trials and cellular studies, elevated melatonin levels concurrent with carbohydrate intake significantly reduce insulin secretion and impair glucose tolerance, a mechanism that physiologically serves to suppress nocturnal insulin release.
- supports: Increased Melatonin Signaling Is a Risk Factor for Type 2 Diabetes. (Cell metabolism 2016) · cited 257x in the literature
"Accordingly, in insulin-secreting cells, melatonin reduced cAMP levels, and MTNR1B overexpression exaggerated the inhibition of insulin release exerted by melatonin... Thus, our data support a model where enhanced melatonin signaling in islets reduces insulin secretion, leading to hyperglycemia and greater future risk of T2D. The findings also imply that melatonin physiologically serves to inhibit nocturnal insulin release." (abstract, results)
pubmedfull study (doi) - supports: Interplay of Dinner Timing and MTNR1B Type 2 Diabetes Risk Variant on Glucose Tolerance an… (Diabetes care 2022) · cited 72x in the literature
"Melatonin serum levels were 3.5-fold higher in the late versus early condition, with late dinner timing resulting in 6.7% lower insulin AUC and 8.3% higher glucose AUC... Concurrently high endogenous melatonin and carbohydrate intake, as typical for late eating, impairs glucose tolerance, especially in MTNR1B G-risk allele carriers, attributable to insulin secretion defects." (abstract, results)
pubmedfull study (doi)
Approximately one-third of the human population carries the melatonin receptor MTNR1B genetic variant associated with altered glucose regulation.
"going back to the discovery of that melatonin receptor variant, nearly one-third of the population have that variant." (said at 0:24:30)
Genome-wide association studies have identified common genetic variants in and near the melatonin receptor 1B (MTNR1B) gene—such as rs10830963 and rs2166706—that are significantly associated with altered fasting plasma glucose levels and increased risk for type 2 diabetes across diverse populations. Risk allele frequencies for these variants are widely documented in the range of ~30% to 45% in European Caucasian, Indian Asian, and Han Chinese cohorts, supporting the claim that approximately one-third of the human population carries an MTNR1B variant linked to glucose regulation.
An oral glucose tolerance test administered in the evening or late night results in significantly higher 90-minute blood glucose levels than the same test administered in the morning.
"you go in the morning to a clinic and get a bolus of glucose, and then after 90 minutes, you measure your blood sugar level, it may come down to normal level. But the same person, if he or she goes to the clinic in the evening or late night, gets the same bolus of glucose, and after 90 minutes, the blood glucose may remain at a high level, which would qualify him or her to be diabetic." (said at 0:25:30)
Circadian physiology and controlled crossover studies demonstrate significant diurnal variation in postprandial glucose tolerance. When identical glucose challenges or meals are administered in the biological evening versus the biological morning under strictly controlled conditions, postprandial blood glucose concentrations remain markedly higher due to circadian reductions in beta-cell responsivity and insulin sensitivity. Consequently, a normoglycemic response following a morning glucose challenge can appear impaired or markedly elevated when administered late in the day.
The International Labour Organization and European definitions classify someone as a shift worker if they stay awake for 2 to 3 hours between 10:00 p.m. and 5:00 a.m. for at least 50 days in a year.
"the International Labour Organization and some of the European countries, they have come up with a working definition of shift work, which means, which essentially translates to very simple term, like if you stay awake for two to three hours between 10:00 p.m. and 5:00 a.m. for 50 days in a year—so that is, on an average, one day in a week—then you may be considered as a shift worker." (said at 0:29:45)
No published record matching the claim that the International Labour Organization and European definitions classify an individual as a shift worker if they stay awake for 2 to 3 hours between 10:00 p.m. and 5:00 a.m. for at least 50 days in a year was located; this does not prove the claim false.
It takes nearly two days for the human circadian clock to adjust to a two-hour change in sleep or wake-up time.
"and it takes almost two days to adjust with two hours' change in wake-up time or two hours' change in sleep time." (said at 0:30:53)
Human circadian rhythm studies and chronobiology literature show that the endogenous central circadian pacemaker adjusts at an average rate of roughly 1 to 1.5 hours per day (with delays generally adapting slightly faster than advances). Consequently, shifting the sleep-wake schedule by 2 hours typically requires between 1.5 to 2 days for the underlying circadian clock (as measured by dim light melatonin onset or core body temperature rhythms) to fully re-entrain.
Shift work sensitizes the body to damage caused by alcohol consumption.
"shift work combined with alcohol or too much caffeinated drink is quite toxic to our body. It disturbs our sleep-wake cycle, and we are actually more sensitized to be damaged by alcohol if we're doing shift work." (said at 0:34:09)
Preclinical models and human studies indicate that circadian disruption from shift work sensitizes tissues to alcohol-induced toxicity and injury. Occupational shift work disrupts the normal diurnal rhythm of central and peripheral biological clocks, leading to dampened rhythms of key alcohol-metabolizing enzymes (such as ALDH2), impaired acetaldehyde detoxification, loss of gut microbiome diurnal oscillation, and increased susceptibility to intestinal hyperpermeability and systemic inflammation when combined with alcohol exposure.
- supports: Disrupted diurnal oscillation of gut-derived Short chain fatty acids in shift workers drin… (Translational research : the journal of laboratory and clinical medicine 2020) · cited 58x in the literature
"Since the microbiome has diurnal fluctuations, we hypothesized that SCFAs in humans have a diurnal rhythm and their rhythmicity would be impacted by the host central circadian misalignment (night shift work) which would make intestinal barrier more susceptible to disruption by alcohol." (abstract, passage verified)
pubmedfull study (doi) - supports: Timing matters: circadian rhythm disruption in alcohol-associated peripheral organ pathoph… (Function (Oxford, England) 2026) · cited 1x in the literature
"Evidence from preclinical and human studies indicates that both genetic and environmental circadian disruption increases alcohol-induced gut permeability, systemic inflammation, and liver disease. This review also presents how other lifestyle and environmental factors such as diet, smoking, and shift work worsen circadian disruption and alcohol-related toxicity." (abstract, passage verified)
pubmedfull study (doi) - supports: Diurnal Regulation and Gene-Specific Vulnerability of Oxidative Alcohol-Metabolizing Enzym… (International journal of molecular sciences 2026) · cited 1x in the literature
"night-shift workers showed markedly dampened and phase-shifted ALDH2 rhythms in peripheral blood mononuclear cells, providing the molecular link between occupational circadian misalignment and impaired acetaldehyde detoxification." (abstract, passage verified)
pubmedfull study (doi)
Humans are biologically crepuscular, experiencing higher alertness in the morning and evening and a physiological increase in sleep pressure after lunch.
"we humans are not strictly diurnal; we are crepuscular, so that means we are more alert in the morning and evening and a little less alert right after lunch. Our internal sleep pressure actually goes up physiologically right after lunch" (said at 0:40:58)
The speaker's description captures a real physiological phenomenon—the midday decline in alertness (often called the 'post-lunch dip') and the evening peak in circadian alertness—but uses inaccurate terminology. Biologically, humans are classified as diurnal, not crepuscular (a term reserved for species primarily active at twilight, such as dawn and dusk). Furthermore, in sleep physiology models, homeostatic 'sleep pressure' (Process S) accumulates continuously during waking hours rather than surging suddenly after lunch; rather, the afternoon drop in alertness and increased sleep propensity are mediated by circadian and ultradian rhythms (Process C) and occur even in the absence of food intake.
The lighting industry is a $27 billion market.
"And lighting itself is a $27 billion industry" (said at 0:44:20)
No published record matching the claim that the lighting industry is a $27 billion market was located; this does not prove the claim false. Published estimates of lighting market size vary substantially depending on geographic scope, segment (e.g., fixtures, lamps, or specific technologies like LEDs), and whether lighting equipment revenue or lighting energy expenditure is evaluated.
The term 'time-restricted feeding' (or time-restricted eating) was discovered and coined in Dr. Satchin Panda's laboratory publication.
"time-restricted feeding, or time-restricted eating, is something that was, I would say, discovered in our lab, and the term was also coined in our publication." (said at 0:47:45)
The speaker asserts that the concept of time-restricted feeding (or time-restricted eating) was discovered and the term coined in their laboratory's publication (referring to the landmark 2012 Hatori et al. paper from Satchin Panda's lab). While the 2012 study popularized the paradigm in modern metabolic and chronobiology research, neither the biological phenomenon nor the terminology originated there. The exact phrase 'time-restricted feeding' has been used in peer-reviewed chronobiology and physiology literature since at least the 1980s and 1990s, including studies demonstrating its effects on circadian entrainment, clock genes, and metabolic rhythms years prior to 2012.
- contradicts: Time-restricted feeding entrains daily rhythms of energy metabolism in mice. (American journal of physiology. Regulatory, integrative and comparative physiology 2006) · cited 101x in the literature
"Energy metabolism, oxygen consumption rate (VO2), and respiratory quotient (RQ) in mice were monitored continuously throughout 12:12-h light-dark cycles before, during, and after time-restricted feeding (RF)." (abstract, results, passage verified)
pubmedfull study (doi) - context: Time-restricted feeding without reducing caloric intake prevents metabolic diseases in mic… (Cell metabolism 2012) · cited 1999x in the literature
"To test whether obesity and metabolic diseases result from HFD or disruption of metabolic cycles, we subjected mice to either ad lib or time-restricted feeding (tRF) of a HFD for 8 hr per day." (abstract, results, passage verified)
pubmedfull study (doi)
During 7 to 8 hours of sleep, the brain clears toxic materials, strengthens synaptic connections between neurons, and resynthesizes neurotransmitters.
"when we sleep for seven hours or eight hours, during that seven to eight hours our brain is repairing and rejuvenating itself by taking out the toxic materials, by strengthening the synaptic connections or connections between our neurons, and resynthesizing some of the neurotransmitters." (said at 0:50:33)
The speaker's description of the brain's restorative functions during sleep is supported by neurobiological literature. Sleep facilitates metabolic waste clearance through the glymphatic system, in which the interstitial space expands to enhance cerebrospinal and interstitial fluid exchange, clearing neurotoxic metabolites such as amyloid-beta. Sleep also supports synaptic consolidation and remodeling, selectively strengthening synaptic connections involved in long-term memory traces while regulating overall synaptic homeostasis, and restores neurotransmitter and neuromodulator reserves depleted during wakefulness.
- supports: Sleep drives metabolite clearance from the adult brain. (Science (New York, N.Y.) 2013) · cited 5440x in the literature
"natural sleep or anesthesia are associated with a 60% increase in the interstitial space, resulting in a striking increase in convective exchange of cerebrospinal fluid with interstitial fluid. In turn, convective fluxes of interstitial fluid increased the rate of β-amyloid clearance during sleep. Thus, the restorative function of sleep may be a consequence of the enhanced removal of potentially neurotoxic waste products that accumulate in the awake central nervous system." (abstract, results, passage verified)
pubmedfull study (doi) - supports: Aberrant waste disposal in neurodegeneration: why improved sleep could be the solution. (Cerebral circulation - cognition and behavior 2021) · cited 24x in the literature
"Removal of toxic metabolites and proteins from the brain parenchyma generated during waking activity and high levels of synaptic processing is critical to normal brain function and only enabled during deep sleep." (abstract, passage verified)
pubmedfull study (doi) - supports: Systems memory consolidation during sleep: oscillations, neuromodulators, and synaptic rem… (BMB reports 2025) · cited 7x in the literature
"This process involves systems consolidation, where memory traces are reorganized across brain regions, and synaptic consolidation, which fine-tunes local neural connections. Sleep plays a critical role in both, coordinating memory reactivation, synaptic remodeling, and long-range neural communication." (abstract, passage verified)
pubmedfull study (doi)
It takes at least five hours for the human stomach to digest a meal after eating.
"when we eat, it takes at least five hours for our stomach to digest that food, and after five hours, then our intestine might take several hours to absorb nutrients" (said at 0:51:58)
Gastric digestion and emptying do not require a minimum of five hours before intestinal absorption begins. In healthy adults, gastric emptying starts within minutes of meal ingestion, and the stomach empties chyme continuously into the small intestine throughout the postprandial period. Diagnostic scintigraphy and breath test studies establish that gastric half-emptying time (T1/2) for standard solid meals is typically between 45 and 120 minutes, with the vast majority (over 80% to 90%) of a meal emptied from the stomach by 3 to 4 hours. Furthermore, nutrient absorption in the small intestine begins as soon as gastric contents enter the duodenum, rather than waiting until the entire stomach has emptied.
Mice with ad libitum access to food consume 70% to 85% of food at night and 15% to 30% during the day, becoming prone to diabetes, weight gain, and elevated plasma fatty acids, whereas isocaloric feeding within an 8- to 10-hour window prevents or reverses these conditions.
"When we give mice ad libitum access to food, they can eat anytime, then they will eat nearly 70 to 85% of the food during nighttime when they're awake, 15 to 30% of food during daytime when they typically sleep. And in this lifestyle, mice will slowly gain weight, they will slowly become diabetic, they will have high plasma fatty acids that will make them prone to heart diseases, and many other bad things will happen. But if we feed the mice the same number of calories from the same diet source, whether it's healthy diet or unhealthy diet, and they get to eat all of that food within 8 to 10 hours, then we can protect them from all these diseases. And if the mice are already having disease and we put them in time-restricted feeding for 8 to 10 hours, we can reverse those diseases." (said at 0:53:31)
The speaker accurately describes published rodent research from their laboratory examining time-restricted feeding (TRF). In seminal mouse studies (Hatori et al., 2012; Chaix et al., 2014), mice with ad libitum access to obesogenic diets consumed calories across both the active (night) and rest (day) phases and developed obesity, hyperinsulinemia, hepatic steatosis, and metabolic dysfunction. Restricting food access isocalorically to an 8- to 10-hour window during the active phase prevented the development of these metabolic conditions and reversed preexisting obesity and type 2 diabetes. Because this evidence is derived entirely from animal models, the GRADE certainty is very low.
Consuming food within an 8- to 10-hour window in mice enhances detoxification, improves substrate metabolism, enhances mitochondrial function, lowers reactive oxygen species, and boosts autophagy.
"this timed eating is triggering breakdown of toxic materials, detoxification during the fasting time, better usage of fat, protein, and carbohydrate during day and night, and improvement in metabolism and mitochondria function that reduces reactive oxygen species—all of these good things—and improved autophagy. All of these things are happening when mice eat within 8 to 10 hours." (said at 0:54:37)
No published record matching the claim that consuming food within an 8- to 10-hour window in mice enhances detoxification, substrate metabolism, mitochondrial function, reduces reactive oxygen species, and boosts autophagy was located; this does not prove the claim false.
App data from the myCircadianClock study shows that nearly 50% of adults have a daily eating window of 15 hours or longer, while only 10% eat within a 12-hour or shorter window.
"What we found is nearly 50% of adults have an eating window of 15 hours or longer... And we figured out that nearly 50% of adults eat for 15 hours or longer, and only 10% of adults actually eat for 12 hours or less interval in a day." (said at 0:57:42)
In a 2015 observational study using a custom smartphone app (myCircadianClock) to track real-time eating patterns in 156 healthy, non-shift-working adults (Gill & Panda, Cell Metabolism), researchers found that the daily eating duration (defined by a 95% intake interval) exceeded 14.75 hours for approximately 50% of participants, while fewer than 10% of participants consumed food within an eating window of 12 hours or less.
In a study of 156 people, fewer than 5% self-reported on a questionnaire that their daily eating window exceeded 13 hours.
"when we did the study on 156 people, we had a questionnaire where we asked them, "What time do you eat your breakfast, lunch, and dinner? What is the interval of time when you eat?" And when we compare that to their own response, it was only less than 5% of people who said that they eat for more than 13 hours." (said at 0:59:17)
In a 2015 observational study led by Satchidananda Panda and Shubhroz Gill (PMID 26411343), 156 non-shift-working adults were tracked using a smartphone application to record daily ingestion events. At baseline, self-reported eating times on questionnaires substantially underestimated actual daily eating durations, with fewer than 5% reporting an eating window exceeding 13 hours, whereas objective app tracking showed that the daily intake duration exceeded 14.75 hours for over half of the cohort.
- supports: A Smartphone App Reveals Erratic Diurnal Eating Patterns in Humans that Can Be Modulated f… (Cell metabolism 2015) · cited 902x in the literature
"Using a mobile app, we monitored ingestion events in healthy adults with no shift-work for several days. Most subjects ate frequently and erratically throughout wakeful hours, and overnight fasting duration paralleled time in bed. There was a bias toward eating late, with an estimated <25% of calories being consumed before noon and >35% after 6 p.m. "Metabolic jetlag" resulting from weekday/weekend variation in eating pattern akin to travel across time zones was prevalent. The daily intake duration (95% interval) exceeded 14.75 hr for half of the cohort." (abstract, results, passage verified)
pubmedfull study (doi)
App data shows that people are most likely to consume alcohol and sugary treats between 7:00 p.m. and 11:00 p.m. or midnight.
"For example, if you ask what time of the day people are more likely to drink alcohol and have more sugary treats, it's between 7:00 p.m. and 11:00 p.m. or midnight." (said at 1:01:37)
No published record matching the claim that smartphone app tracking data shows people are most likely to consume alcohol and sugary treats between 7:00 p.m. and 11:00 p.m. or midnight was located; this does not prove the claim false.
Studies show that a cup of coffee affects the circadian clock equivalently to one to two hours of bright light exposure.
"Yes, there are actually studies showing that a cup of coffee is equivalent to an hour or two hours of bright light, that's the impact on circadian clock, so it does impact our sleep." (said at 1:04:20)
A double-blind, placebo-controlled crossover study (Burke et al., 2015) evaluated the effect of evening caffeine (equivalent to a double espresso / ~200 mg, taken 3 hours before habitual bedtime) on the human circadian melatonin rhythm. The researchers found that caffeine induced an approximate 40-minute circadian phase delay, which was roughly half the magnitude of the phase delay induced by 3 hours of evening bright light exposure (~3,000 lux), aligning with the claim that caffeine's phase-shifting effect is equivalent to about 1 to 2 hours of bright light exposure.
Only 10% of adults consume all their daily calories within a 12-hour or shorter window.
"as I said, only 10% of adults eat for 12 hours or less." (said at 1:07:00)
The claim reflects the findings of a seminal 2015 observational study by Gill and Panda tracking ingestion events in non-shift-working adults via a smartphone application (myCircadianClock). In this cohort (n = 156), daily eating duration exceeded 14.75 hours for more than half the participants, and over 90% of individuals had an eating window of 12 hours or longer, meaning approximately 10% or fewer consumed all food within a window of 12 hours or less. Evidence certainty is rated low because the data originate from an observational convenience sample rather than a nationally representative epidemiological survey.
Restricting eating to an 8-hour window while cutting calories to around 1,000 kcal per day and doing intense exercise can adversely alter bile acid metabolism and increase kidney stone risk.
"because occasionally we do see some people try to do eight hours time-restricted eating, at the same time reducing calories to almost 1,000 kilocalories per day, and increasing the activity level, running half a marathon once a week or 5K three times a week, and that can adversely affect your body weight, can affect even your bile acid metabolism, and might increase risk for kidney stones." (said at 1:09:05)
No published record matching the claim that restricting eating to an 8-hour window combined with cutting caloric intake to around 1,000 kcal per day and performing intense exercise adversely alters bile acid metabolism and increases kidney stone risk was located; this does not prove the claim false.
In the late afternoon, resting heart rate is relatively higher, core body temperature is warmer, and muscle tone and joint flexibility are improved compared to the early morning.
"One is for exercise we need much better muscle tone, joint flexibility, and less risk for injury, and all of the stars align in the late afternoon because that's when our heart rate is relatively high, our core body temperature is warm, we don't need that warming up that we typically need early in the morning, that much warming up, and muscle tone is better, joint flexibility is much better, so the risk for injury is less." (said at 1:12:18)
Circadian physiology well establishes that core body temperature, resting cardiovascular parameters, muscle contractile properties (tone/strength), and joint flexibility follow a diurnal rhythm that peaks in the late afternoon to early evening compared to early morning troughs. Systematic reviews and experimental trials confirm that core temperature, muscle strength/power, and flexibility peak around 16:00–18:00 h.
- supports: Sleep, circadian rhythms, and athletic performance. (Sleep medicine reviews 2015) · cited 258x in the literature
"The most robust result is that athletic performance seems to be best in the evening around the time when the core body temperature typically is at its peak." (abstract, results, passage verified)
pubmedfull study (doi) - supports: Daily variation in performance measures related to anaerobic power and capacity: A systema… (Chronobiology international 2022) · cited 29x in the literature
"Forty-eight studies found several of their performance variables to display time-of-day effects, with higher values in the evening than the morning... Time-of-day variations in anaerobic performance has previously been partially explained by higher core-body and/or muscle temperature and better muscle contractile properties in the afternoon" (abstract, results)
pubmedfull study (doi) - supports: Is there a diurnal variation in flexibility in extreme morning and evening-types where a s… (Chronobiology international 2026) · cited 2x in the literature
"Diurnal variations (08:00-20:00 h) in temperature (T IA , Δ0.64ºC), whole-body flexibility (Δ3.0 cm), lateral-movement of the spine (Δ4.4ºROM), ankle dorsi-flexion (1.9ºROM), right grip strength (Δ4.0N), and arousal (Δ2.4 cm) were observed ( p < 0.05); the highest values for all variables were recorded at 16:00 h, apart from arousal which peaked at 12:00 h." (abstract, results, passage verified)
pubmedfull study (doi)
A Stockholm study found that high-intensity interval training in the morning raised blood glucose in individuals with diabetes, while the same exercise in the late afternoon lowered 24-hour blood glucose.
"And in fact, there is at least one study that came out of Stockholm showing that people—the same people when they did exercise, high-intensity interval training in the morning versus the same people doing the same high-intensity interval training in late afternoon, they found that people who did the morning HIIT interval training, the blood glucose level actually went up, whereas doing the same exercise in the evening helped them to reduce their blood glucose level, 24-hours blood glucose, those who have diabetes." (said at 1:13:29)
A randomized crossover trial conducted at the Karolinska Institutet in Stockholm (Savikj et al., 2019) directly supports the claim. The study evaluated 11 men with type 2 diabetes undergoing two weeks of morning versus afternoon high-intensity interval training (HIIT). Continuous glucose monitoring demonstrated that morning HIIT acutely elevated blood glucose levels compared to baseline, whereas afternoon HIIT reduced average glucose levels.
The pancreas has an endogenous clock that causes it to secrete more insulin in the morning and first half of the day than in the second half of the day.
"And what we know is, as I said, our pancreas has a clock. That means the pancreas produces more insulin in the morning or the first half of the day, and the second half of the day, even in the absence of melatonin, it doesn't produce that much insulin as well as in the morning." (said at 1:14:22)
Human pancreatic islets possess autonomous molecular circadian clocks, and controlled human laboratory studies confirm that the endogenous circadian system regulates beta-cell function independently of behavioral factors. Beta-cell responsivity and insulin secretion capacity are naturally higher in the biological morning/first half of the day and decline in the biological evening.
- supports: Differential effects of the circadian system and circadian misalignment on insulin sensiti… (Diabetes, obesity & metabolism 2018) · cited 167x in the literature
"While the circadian system reduces glucose tolerance in the biological evening compared to the biological morning mainly by decreasing both dynamic and static β-cell responsivity, circadian misalignment reduced glucose tolerance mainly by lowering insulin sensitivity, not by affecting β-cell function." (abstract, results, passage verified)
pubmedfull study (doi) - supports: In pancreatic islets from type 2 diabetes patients, the dampened circadian oscillators lea… (Proceedings of the National Academy of Sciences of the United States of America 2020) · cited 104x in the literature
"Circadian clocks operative in pancreatic islets participate in the regulation of insulin secretion in humans and, if compromised, in the development of type 2 diabetes (T2D) in rodents. Here we demonstrate that human islet α- and β-cells that bear attenuated clocks exhibit strongly disrupted insulin and glucagon granule docking and exocytosis." (abstract, results, passage verified)
pubmedfull study (doi)
Contracting skeletal muscles take up glucose directly from the bloodstream without requiring insulin.
"And when we exercise, our muscles actually take up a lot of glucose without the help of insulin" (said at 1:14:50)
The claim is supported by extensive physiology literature and functional experiments in humans and animal models. During muscle contraction/exercise, skeletal muscle takes up glucose through translocation of GLUT4 transporters to the cell membrane via an intracellular signaling cascade (involving AMPK, intracellular calcium, and mechanical stress mechanisms) that operates independently of insulin stimulation. Consequently, individuals with severe insulin resistance or type 2 diabetes maintain intact exercise-stimulated muscle glucose uptake.
Upon waking in the morning, circulating melatonin levels gradually decline while cortisol levels spike.
"And then after waking up, try to avoid food for one to two hours because that's when your melatonin hormone is slowly going down and cortisol hormone is spiking." (said at 1:17:26)
The speaker's physiological description of morning endocrine dynamics is well supported. Circulating melatonin levels decline toward daytime baseline levels in the early morning around wake time, while cortisol undergoes a marked surge known as the cortisol awakening response (CAR), typically peaking approximately 30 to 45 minutes after waking before gradually declining over the remainder of the day.
Fact-checked episodes
Publications
- Neuropsin-expressing cells in the retina affect melanopsin expression and response to light in mice.Scientific reports 2026 · CEBM Level 5
- NutriRAG: unleashing the power of large language models for food identification and classification through retrieval methods.Journal of the American Medical Informatics Association : JAMIA 2026 · CEBM Level 4
- Comparison of Self-Reported Dietary Recalls and Real-Time Tools to Track Mealtimes in Older Adults: A Pilot Study.Inquiry : a journal of medical care organization, provision and financing 2026 · CEBM Level 4
- Relative Effects of Time-Restricted Eating, Energy-Restricted Eating, and Unrestricted Eating on Eating Patterns and Dietary Intake: Results From a Randomized Controlled Trial.Journal of the Academy of Nutrition and Dietetics 2026 · CEBM Level 2
- The diversity and consistency of what and when people eat.Nature metabolism 2026 · CEBM Level 4
- Retinal ganglion cells expressing melanopsin.Handbook of clinical neurology 2026 · CEBM Level 5
- Time-Restricted Eating Promotes Weight Loss and Favorable Changes in Adipose in Obesity: The TREAD Randomized Control Trial.Obesity (Silver Spring, Md.) 2026 · CEBM Level 2
- Time Restricted Feeding Mitigates High-Fat-Diet Induced Sleep Disruption and Amplifies NREM Substates.bioRxiv : the preprint server for biology 2026 · CEBM Level 5
- Relationship Between Sleep and Meal Timing with Glycemia Parameters in Individuals with Obesity Participating in a Randomized Time-Restricted Eating Study.Nutrients 2026 · CEBM Level 3
- Time-restricted eating in adults with type 2 diabetes mellitus on concomitant glucagon-like peptide-1 receptor agonists: case report.Frontiers in clinical diabetes and healthcare 2026 · CEBM Level 4
- Effects of time-restricted feeding on health outcomes: lessons from model organisms.The Proceedings of the Nutrition Society 2026 · CEBM Level 5
- Time of Day as a Biological Variable in Cardiovascular and Kidney Disease Research: A Scientific Statement From the American Heart Association.Arteriosclerosis, thrombosis, and vascular biology 2026 · CEBM Level 5
- Predictive models of post-prandial glucose response in persons with prediabetes and early onset type 2 diabetes: A pilot study.Diabetes, obesity & metabolism 2025 · CEBM Level 4
- Bile acid synthesis impedes tumor-specific T cell responses during liver cancer.Science (New York, N.Y.) 2025 · CEBM Level 5
- Protocol for a 1-year randomised, controlled, parallel group, open-label trial on the effects and feasibility of time-restricted eating in individuals with type 2 diabetes- The REStricted Eating Time in the treatment of type 2 diabetes (RESET2) trial.Diabetic medicine : a journal of the British Diabetic Association 2025 · CEBM Level 5
- Time-restricted eating, caloric reduction, and unrestricted eating effects on weight and metabolism: a randomized trial.Obesity (Silver Spring, Md.) 2025 · CEBM Level 2
- The time is now: accounting for time-of-day effects to improve reproducibility and translation of metabolism research.Nature metabolism 2025 · CEBM Level 5
- NutriRAG: Unleashing the Power of Large Language Models for Food Identification and Classification through Retrieval Methods.medRxiv : the preprint server for health sciences 2025 · CEBM Level 5
- Time-restricted eating to address persistent cancer-related fatigue among cancer survivors: a randomized controlled trial.Supportive care in cancer : official journal of the Multinational Association of Supportive Care in Cancer 2025 · CEBM Level 2
- Genome-wide allele-specific expression in multi-tissue samples from healthy male baboons reveals the transcriptional complexity of mammals.Cell genomics 2025 · CEBM Level 5
- Comparing the effectiveness of calorie restriction with and without time-restricted eating on the circadian regulation of metabolism: rationale and protocol of a three-arm randomised controlled trial in adults at risk of type 2 diabetes.Nutrition research (New York, N.Y.) 2025 · CEBM Level 5
- Lateral habenula astroglia modulate the potentiating antidepressant-like effects of bright light stimulation in intractable depression.Frontiers in pharmacology 2025 · CEBM Level 5
- Time-Restricted Eating Improves Quality of Life, Heart Rate, and Mitochondrial Function in Patients with Postural Orthostatic Tachycardia Syndrome.medRxiv : the preprint server for health sciences 2025 · CEBM Level 4
- Biological vs. Chronological Overnight Fasting: Influence of Last Evening Meal on Morning Glucose in Dysglycemia.Nutrients 2025 · CEBM Level 4
- Ketone body driven lipid remodeling supports thermogenic adaptation to fasting.bioRxiv : the preprint server for biology 2025 · CEBM Level 5
- Metatranscriptomics Uncover Diurnal Functional Shifts in Bacterial Transgenes with Profound Metabolic Effects.Cell host & microbe 2025 · CEBM Level 5
- The diversity and consistency of what and when people eat.Research square 2025 · CEBM Level 4
- Time-restricted eating improves quality of life, heart rate, and mitochondrial function in patients with postural orthostatic tachycardia syndrome. An open-label pilot study.Scientific reports 2025 · CEBM Level 4
- Take the reins: a study protocol of a randomized controlled trial testing the effects of time-restricted eating vs. nutrition control on cancer-related fatigue among survivors of hematological malignancies.BMC nutrition 2025 · CEBM Level 5
- Short-term 24h dietary recalls from observational studies cannot support claims on mortality.Diabetes & metabolic syndrome 2025 · CEBM Level 5
- Learning from circadian rhythm to transform cancer prevention, prognosis, and survivorship care.Trends in cancer 2024 · CEBM Level 5
- Neuronal reprogramming of mouse and human fibroblasts using transcription factors involved in suprachiasmatic nucleus development.iScience 2024 · CEBM Level 5
- Energy balance drives diurnal and nocturnal brain transcriptome rhythms.Cell reports 2024 · CEBM Level 5
- Effects of 3 months of 10-h per-day time-restricted eating and 3 months of follow-up on bodyweight and cardiometabolic health in Danish individuals at high risk of type 2 diabetes: the RESET single-centre, parallel, superiority, open-label, randomised controlled trial.The lancet. Healthy longevity 2024 · CEBM Level 2
- Diurnal expression of Dgat2 induced by time-restricted feeding maintains cardiac health in the Drosophila model of circadian disruption.Aging cell 2024 · CEBM Level 5
- Diet and Meal Pattern Determinants of Glucose Levels and Variability in Adults with and without Prediabetes or Early-Onset Type 2 Diabetes: A Pilot Study.Nutrients 2024 · CEBM Level 4
- International consensus on fasting terminology.Cell metabolism 2024 · CEBM Level 5
- Time-Restricted Feeding Reduces Atherosclerosis in LDLR KO Mice but Not in ApoE Knockout Mice.Arteriosclerosis, thrombosis, and vascular biology 2024 · CEBM Level 5
- Increased central obesity correlates with physical activity and food processing in recently diagnosed multiple sclerosis.Multiple sclerosis and related disorders 2024 · CEBM Level 4
- Multi-organ transcriptome atlas of a mouse model of relative energy deficiency in sport.Cell metabolism 2024 · CEBM Level 5
- Time-Restricted Eating in Adults With Metabolic Syndrome : A Randomized Controlled Trial.Annals of internal medicine 2024 · CEBM Level 2
- A pre-post trial to examine biological mechanisms of the effects of time-restricted eating on symptoms and quality of life in bipolar disorder.BMC psychiatry 2024 · CEBM Level 5
- Late eating is associated with poor glucose tolerance, independent of body weight, fat mass, energy intake and diet composition in prediabetes or early onset type 2 diabetes.Nutrition & diabetes 2024 · CEBM Level 4
- Time-restricted eating to address persistent cancer-related fatigue among cancer survivors: A randomized controlled trial.Research square 2024 · CEBM Level 2
- Time-restricted eating alters the 24-hour profile of adipose tissue transcriptome in men with obesity.Obesity (Silver Spring, Md.) 2023 · CEBM Level 4
- The effects of time-restricted eating and weight loss on bone metabolism and health: a 6-month randomized controlled trial.Obesity (Silver Spring, Md.) 2023 · CEBM Level 2
- Predicting energy intake with an accelerometer-based intake-balance method.The British journal of nutrition 2023 · CEBM Level 2
- Daytime light exposure is a strong predictor of seasonal variation in sleep and circadian timing of university students.Journal of pineal research 2023 · CEBM Level 3
- Time-restricted eating did not alter insulin sensitivity or β-cell function in adults with obesity: A randomized pilot study.Obesity (Silver Spring, Md.) 2023 · CEBM Level 2
- Diurnal transcriptome landscape of a multi-tissue response to time-restricted feeding in mammals.Cell metabolism 2023 · CEBM Level 5
- Insulin-regulated serine and lipid metabolism drive peripheral neuropathy.Nature 2023 · CEBM Level 5
- Dynamic activity in cis-regulatory elements of leukocytes identifies transcription factor activation and stratifies COVID-19 severity in ICU patients.Cell reports. Medicine 2023 · CEBM Level 4
- Time-restricted feeding promotes muscle function through purine cycle and AMPK signaling in Drosophila obesity models.Nature communications 2023 · CEBM Level 5
- Targeting Energy Intake and Circadian Biology to Engage Mechanisms of Aging in Older Adults With Obesity: Calorie Restriction and Time-Restricted Eating.The journals of gerontology. Series A, Biological sciences and medical sciences 2023 · CEBM Level 5
- When a calorie is not just a calorie: Diet quality and timing as mediators of metabolism and healthy aging.Cell metabolism 2023 · CEBM Level 5
- The Untapped Potential of Circadian Timing as a Variable for Discoveries and Reproducibility.Cellular and molecular gastroenterology and hepatology 2023 · CEBM Level 5
- Reciprocal regulation between the molecular clock and kidney injury.Life science alliance 2023 · CEBM Level 5
- Ultrastructure of Synaptic Connectivity within Subregions of the Suprachiasmatic Nucleus Revealed by a Genetically Encoded Tag and Serial Blockface Electron Microscopy.eNeuro 2023 · CEBM Level 5
- Eating architecture in adults at increased risk of type 2 diabetes: associations with body fat and glycaemic control.The British journal of nutrition 2022 · CEBM Level 4
- Time-restricted Eating for the Prevention and Management of Metabolic Diseases.Endocrine reviews 2022 · CEBM Level 5
- Time-restricted feeding and circadian autophagy for long life.Nature reviews. Endocrinology 2022 · CEBM Level 5
- Ocular and extraocular roles of neuropsin in vertebrates.Trends in neurosciences 2022 · CEBM Level 5
- Assessing temporal eating pattern in free living humans through the myCircadianClock app.International journal of obesity (2005) 2022 · CEBM Level 5
- Time-restricted eating improves glycemic control and dampens energy-consuming pathways in human adipose tissue.Nutrition (Burbank, Los Angeles County, Calif.) 2022 · CEBM Level 4
- Calorie and Time Restriction in Weight Loss.The New England journal of medicine 2022 · CEBM Level 5
- Revival of light signalling in the postmortem mouse and human retina.Nature 2022 · CEBM Level 5
- Associations between the timing of eating and weight-loss in calorically restricted healthy adults: Findings from the CALERIE study.Experimental gerontology 2022 · CEBM Level 3
- Aligning mealtimes to live longer.Science (New York, N.Y.) 2022 · CEBM Level 5
- Time for better time-restricted eating trials to lessen the burden of metabolic diseases.Cell reports. Medicine 2022 · CEBM Level 5
- Diet and feeding pattern modulate diurnal dynamics of the ileal microbiome and transcriptome.Cell reports 2022 · CEBM Level 5
- Time-restricted eating to improve cardiometabolic health: The New York Time-Restricted EATing randomized clinical trial - Protocol overview.Contemporary clinical trials 2022 · CEBM Level 5
- Focus on diet and exercise.Cell metabolism 2022 · CEBM Level 5
- Feasibility of time-restricted eating and impacts on cardiometabolic health in 24-h shift workers: The Healthy Heroes randomized control trial.Cell metabolism 2022 · CEBM Level 2
- The impact of a self-selected time restricted eating intervention on eating patterns, sleep, and late-night eating in individuals with obesity.Frontiers in nutrition 2022 · CEBM Level 2
- Barriers to adherence in time-restricted eating clinical trials: An early preliminary review.Frontiers in nutrition 2022 · CEBM Level 5
- New Horizons: Circadian Control of Metabolism Offers Novel Insight Into the Cause and Treatment of Metabolic Diseases.The Journal of clinical endocrinology and metabolism 2021 · CEBM Level 5
- A genome-wide microRNA screen identifies the microRNA-183/96/182 cluster as a modulator of circadian rhythms.Proceedings of the National Academy of Sciences of the United States of America 2021 · CEBM Level 5
- Pilot Clinical Trial of Time-Restricted Eating in Patients with Metabolic Syndrome.Nutrients 2021 · CEBM Level 5
- A Timely Call to Arms: COVID-19, the Circadian Clock, and Critical Care.Journal of biological rhythms 2021 · CEBM Level 5
- The Effects of Time-Restricted Eating versus Standard Dietary Advice on Weight, Metabolic Health and the Consumption of Processed Food: A Pragmatic Randomised Controlled Trial in Community-Based Adults.Nutrients 2021 · CEBM Level 2
- Time-Restricted Eating for 12 Weeks Does Not Adversely Alter Bone Turnover in Overweight Adults.Nutrients 2021 · CEBM Level 2
- Time-Restricted Eating Improves Quality of Life Measures in Overweight Humans.Nutrients 2021 · CEBM Level 2
- Protocol for a randomised controlled trial on the feasibility and effects of 10-hour time-restricted eating on cardiometabolic disease risk among career firefighters doing 24-hour shift work: the Healthy Heroes Study.BMJ open 2021 · CEBM Level 5
- A Smartphone Intervention to Promote Time Restricted Eating Reduces Body Weight and Blood Pressure in Adults with Overweight and Obesity: A Pilot Study.Nutrients 2021 · CEBM Level 4
- Sex- and age-dependent outcomes of 9-hour time-restricted feeding of a Western high-fat high-sucrose diet in C57BL/6J mice.Cell reports 2021 · CEBM Level 5
- Profiling Transcription Initiation in Peripheral Leukocytes Reveals Severity-Associated Cis-Regulatory Elements in Critical COVID-19.bioRxiv : the preprint server for biology 2021 · CEBM Level 4
- Temporal Eating Patterns and Eating Windows among Adults with Overweight or Obesity.Nutrients 2021 · CEBM Level 4
- Ten-Hour Time-Restricted Eating Reduces Weight, Blood Pressure, and Atherogenic Lipids in Patients with Metabolic Syndrome.Cell metabolism 2020 · CEBM Level 4
- Time-Restricted Eating Effects on Body Composition and Metabolic Measures in Humans who are Overweight: A Feasibility Study.Obesity (Silver Spring, Md.) 2020 · CEBM Level 2
- Author Correction: Time-restricted feeding restores muscle function in Drosophila models of obesity and circadian-rhythm disruption.Nature communications 2020 · CEBM Level 5
- Protocol for a single-centre, parallel-group, randomised, controlled, superiority trial on the effects of time-restricted eating on body weight, behaviour and metabolism in individuals at high risk of type 2 diabetes: the REStricted Eating Time (RESET) study.BMJ open 2020 · CEBM Level 5
- Time-Restricted Eating Alters Food Intake Patterns, as Prospectively Documented by a Smartphone Application.Nutrients 2020 · CEBM Level 2
- Time-Restricted Feeding Prevents Obesity and Metabolic Syndrome in Mice Lacking a Circadian Clock.Cell metabolism 2019 · CEBM Level 5
- The arrival of circadian medicine.Nature reviews. Endocrinology 2019 · CEBM Level 5
- Genetic Liver-Specific AMPK Activation Protects against Diet-Induced Obesity and NAFLD.Cell reports 2019 · CEBM Level 5
- Time-Restricted Feeding Improves Glucose Tolerance in Men at Risk for Type 2 Diabetes: A Randomized Crossover Trial.Obesity (Silver Spring, Md.) 2019 · CEBM Level 2
- Time-Restricted Eating to Prevent and Manage Chronic Metabolic Diseases.Annual review of nutrition 2019 · CEBM Level 5
- Timing tweaks exercise.Nature reviews. Endocrinology 2019 · CEBM Level 5
- Time-restricted feeding restores muscle function in Drosophila models of obesity and circadian-rhythm disruption.Nature communications 2019 · CEBM Level 5
- Interplay between Circadian Clock and Cancer: New Frontiers for Cancer Treatment.Trends in cancer 2019 · CEBM Level 5
- Alternate-Day Fasting Gets a Safe Bill of Health.Cell metabolism 2019 · CEBM Level 5
- Synaptic Specializations of Melanopsin-Retinal Ganglion Cells in Multiple Brain Regions Revealed by Genetic Label for Light and Electron Microscopy.Cell reports 2019 · CEBM Level 5
- Functional diversity of human intrinsically photosensitive retinal ganglion cells.Science (New York, N.Y.) 2019 · CEBM Level 5
- When to Eat: The Importance of Eating Patterns in Health and Disease.Journal of biological rhythms 2019 · CEBM Level 5
- Pharmacological activation of REV-ERBs is lethal in cancer and oncogene-induced senescence.Nature 2018 · CEBM Level 5
- The RNA-Binding Protein NONO Coordinates Hepatic Adaptation to Feeding.Cell metabolism 2018 · CEBM Level 5
- Diurnal transcriptome atlas of a primate across major neural and peripheral tissues.Science (New York, N.Y.) 2018 · CEBM Level 5
- Effects of 8-hour time restricted feeding on body weight and metabolic disease risk factors in obese adults: A pilot study.Nutrition and healthy aging 2018 · CEBM Level 4
- Antibiotic-induced microbiome depletion alters metabolic homeostasis by affecting gut signaling and colonic metabolism.Nature communications 2018 · CEBM Level 5
- Training the Circadian Clock, Clocking the Drugs, and Drugging the Clock to Prevent, Manage, and Treat Chronic Diseases.Trends in pharmacological sciences 2018 · CEBM Level 5
- Sustained Melanopsin Photoresponse Is Supported by Specific Roles of β-Arrestin 1 and 2 in Deactivation and Regeneration of Photopigment.Cell reports 2018 · CEBM Level 5
- Sleepmore in Seattle: Later school start times are associated with more sleep and better performance in high school students.Science advances 2018 · CEBM Level 3
- Circadian rhythms, time-restricted feeding, and healthy aging.Ageing research reviews 2017 · CEBM Level 5
- A camera-phone based study reveals erratic eating pattern and disrupted daily eating-fasting cycle among adults in India.PloS one 2017 · CEBM Level 4
- Time-restricted feeding for prevention and treatment of cardiometabolic disorders.The Journal of physiology 2017 · CEBM Level 5
- Global rise of potential health hazards caused by blue light-induced circadian disruption in modern aging societies.NPJ aging and mechanisms of disease 2017 · CEBM Level 5
- Health consequences of electric lighting practices in the modern world: A report on the National Toxicology Program's workshop on shift work at night, artificial light at night, and circadian disruption.The Science of the total environment 2017 · CEBM Level 5
- Circadian physiology of metabolism.Science (New York, N.Y.) 2016 · CEBM Level 5
- Intrinsically Photosensitive Retinal Ganglion Cells (ipRGCs) Are Necessary for Light Entrainment of Peripheral Clocks.PloS one 2016 · CEBM Level 5