Kyal Van Der Leest

LVLUP Health

Kyal Van Der Leest is associated with LVLUP Health. His work and discussions focus on peptides, metabolism, and GLP-1 support for health and weight management.

32 claims checked on air: 2 context 3 contradicted 5 overstated 22 supported

What they said on air - context

0:46:35needs contextvery lowPeptides to Support Your GLP1 Health And Weight Loss Journey

SLU-PP-332 functions as an exercise mimetic by acting as an agonist at the estrogen receptor-related receptor alpha.

"like another one that's quite trending at the moment that I'm a little hesitant to talk about because it has some potential side effects, but it's called SLU-PP-332. This is another small molecule. It's not a peptide, but it's clumped into them. Um, this works via that estrogen receptor alpha agonism, and they call it exercise in a pill." (said at 0:46:35)

SLU-PP-332 is a synthetic pan-agonist of the estrogen-related receptors (ERRs) with highest potency for ERRα, and has demonstrated exercise-mimetic effects (such as enhanced mitochondrial respiration, increased type IIa oxidative muscle fibers, and improved endurance) in rodent models and cell culture. However, two important qualifications apply: first, the speaker conflated the orphan nuclear receptor 'estrogen-related receptor alpha' (ERRα) with the classical 'estrogen receptor alpha' (ERα), which are distinct receptor systems; second, evidence for SLU-PP-332's exercise-mimetic effects is currently limited entirely to preclinical animal and in vitro studies, with no completed human trials.

0:54:48needs contextmoderatePeptides to Support Your GLP1 Health And Weight Loss Journey

Thymosin beta-4 (TB4) fragments interact with actin to help preserve actin in muscle tissue.

"And TB4 fragments also have an effect on actin, which is one of the main um uh proteins in muscle fiber and it helps preserve actin too." (said at 0:54:48)

Thymosin beta-4 (Tβ4) and its actin-binding peptide fragments bind globular monomeric actin (G-actin), which is a principal structural protein in muscle fibers. In cellular physiology, Tβ4 functions primarily as an actin monomer-sequestering peptide, maintaining an unpolymerized G-actin pool and regulating actin filament assembly, sarcomere dynamics, and muscle tissue repair. Describing this biochemical buffering and sequestration mechanism as 'preserving actin' conveys the general role of Tβ4 in maintaining the intracellular actin pool, though its primary biochemical function is the regulation of actin polymerization dynamics rather than passive tissue preservation.

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