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Editorial illustration: a vial of MOTS-c research peptide beside a green mitochondrion model; research compound, not FDA-approved.
MOTS-c Mitochondrial ORF of the twelve S rRNA type-c (16-residue peptide) · Research peptide (see review for regulatory status)
MOTS-c (editorial illustration, not a product photo).
Image: PepVise editorial illustration via Wikimedia Commons (Public domain). Editorial use for educational purposes only.

Analysis

Discovered in 2015, MOTS-c is encoded within the mitochondrial 12S rRNA gene. Lee 2015 (Cell Metabolism) is the foundational mechanism paper; the peptide acts on AMPK and folate-cycle pathways. The human translational dossier is thin, small-cohort pilot data on glucose tolerance and insulin sensitivity. Methodology v1.2 places it firmly in the research-peptide tier.

MOTS-c is a 16-amino-acid peptide encoded within the mitochondrial 12S rRNA gene. It is the most-cited example of a mitochondrial-derived peptide with a defined cytoplasmic and systemic role. Lee 2015 (Cell Metabolism) is the foundational paper: in mouse models, MOTS-c administration improved glucose tolerance, insulin sensitivity, and protected against high-fat-diet-induced obesity through AMPK pathway activation. Subsequent replications across independent labs strengthened the mechanism case and extended findings to skeletal-muscle metabolism and exercise physiology. The human data layer remains thin. A handful of small Phase 1 dose-escalation studies have been conducted but none have published Phase 2 efficacy results in peer-reviewed venues at the time of this review. Methodology v1.2 scores MOTS-c 5.9. The mechanism is strong, the human evidence is weak. The score is the gap between an interesting peptide-class story and the absence of a published trial dossier; the calibration anchor is BPC-157 (6.8) which has more preclinical depth and one published human pilot. Research-channel supply for MOTS-c is among the most quality-variable in the database. Authentic peer-grade material is available from controlled academic suppliers; the open-market grey channel is not.

FAȚĂ ÎN FAȚĂ

Top patru pe fiecare dimensiune.

Mai mare e mai bine. Cifre tabulare, metodologia pe pagina sa, și da — încrederea în vânzător contează pentru că riscul de contrafacere este real.

#COMPUSDOVEZIMECANISMUMANVÂNZĂTORSIGURANȚĂTOTAL
1BPC-157
Body Protection Compound 157
7.88.24.06.57.06.8
2TB-500
Thymosin Beta-4 fragment
6.47.53.25.86.55.9
4MOTS-c
Mitochondrial Open-Reading-Frame of the 12S rRNA-c
6.57.83.55.56.05.9
8Tesamorelin
synthetic GHRH analogue (Egrifta)
8.08.07.57.57.57.7

Pro și contra

CE FUNCȚIONEAZĂCE NU FUNCȚIONEAZĂ
Mechanism is genetically encoded and biologically plausible, Lee 2015 (Cell Metabolism) established the AMPK-pathway link with subsequent independent replication.Human evidence base is small. No published Phase 2 or larger.
Preclinical metabolic-syndrome models (rodent) reproduce insulin-sensitising and exercise-mimetic effects.Mitochondrial-derived peptides are a young research class, long-term safety data does not yet exist.
Single-ascending-dose human Phase 1 pilots (small-n) suggest a tolerability signal in metabolically-impaired adults.Research-channel supply is highly variable in identity and purity; MOTS-c is one of the more counterfeit-prone compounds in the database.

Alternative testate

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Referințe

3 cited
  1. Lee et al. 2015, MOTS-c regulates metabolic homeostasis, Cell Metabolism
  2. Kim et al. 2018, MOTS-c and mitochondrial peptide signaling, Trends Endocrinol Metab
  3. Reynolds et al. 2021, Mitochondrial-derived peptides in human aging, Aging Cell
Ultima testare
Evaluat cu v1.2