MOTS-c (Human) Acetate Peptide 10mg Lyophilized Powder – ≥99% HPLC Purity

High-purity human MOTS-c peptide (10mg per vial), verified ≥99% purity via HPLC. Mitochondrial-derived peptide (MDP) for metabolic, AMPK pathway, cellular stress & aging research. Manufactured in cGMP-compliant conditions, shipped cold-chain stable. NOT FOR HUMAN CONSUMPTION OR THERAPEUTIC USE. COA included with every order.

$375.00vials

MOTS-c (Human) Acetate – Premium Mitochondrial-Derived Research Peptide

IMPORTANT NOTICE: This product is EXCLUSIVELY FOR LABORATORY RESEARCH, IN VITRO TESTING & EDUCATIONAL USE ONLY. It is NOT intended for human or animal consumption, therapeutic, clinical, or diagnostic use.

MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA-C) is a 16-amino-acid peptide encoded by mitochondrial DNA (mtDNA) (not nuclear DNA), making it a unique mitochondrial-derived peptide (MDP) critical for studying cellular metabolism, energy homeostasis, and stress response.

Key Research Applications

• Metabolic Regulation: Studying insulin sensitivity, glucose uptake, and fatty acid oxidation via AMPK activation

• Mitochondrial Health: Mitochondrial biogenesis, function, and cellular resilience research

• Exercise Mimetic Pathways: Investigating exercise-induced metabolic benefits without physical activity

• Aging & Longevity: Age-related metabolic decline, cellular senescence, and longevity pathways

• Cellular Stress Response: Oxidative stress, inflammation, and nuclear-mitochondrial signaling

MOTS-c (Human) Acetate – Premium Mitochondrial-Derived Research Peptide

IMPORTANT NOTICE: This product is EXCLUSIVELY FOR LABORATORY RESEARCH, IN VITRO TESTING & EDUCATIONAL USE ONLY. It is NOT intended for human or animal consumption, therapeutic, clinical, or diagnostic use.

MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA-C) is a 16-amino-acid peptide encoded by mitochondrial DNA (mtDNA) (not nuclear DNA), making it a unique mitochondrial-derived peptide (MDP) critical for studying cellular metabolism, energy homeostasis, and stress response.

Key Research Applications

• Metabolic Regulation: Studying insulin sensitivity, glucose uptake, and fatty acid oxidation via AMPK activation

• Mitochondrial Health: Mitochondrial biogenesis, function, and cellular resilience research

• Exercise Mimetic Pathways: Investigating exercise-induced metabolic benefits without physical activity

• Aging & Longevity: Age-related metabolic decline, cellular senescence, and longevity pathways

• Cellular Stress Response: Oxidative stress, inflammation, and nuclear-mitochondrial signaling