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MOTS-c 10mg

High-Purity Research Peptide

$100.00$39.99

Out of stock

MOTS-c is a mitochondrial-derived peptide supplied exclusively for laboratory research use. This material is intended for in vitro and non-clinical research applications, including peptide characterization, biochemical analysis, and related studies conducted in controlled laboratory environments.

MOTS-c is provided as a lyophilized (freeze-dried) powder in a vial and manufactured under stringent conditions to ensure consistency, traceability, and reproducibility for qualified research personnel. Vial appearance, label, seal, and cap colors may vary from product photos.

Product Classification

  • Synthetic research peptide

  • Research Use Only (RUO)

  • Not intended for human or animal use

  • For laboratory and research applications only

Research Applications for MOTS-c

In controlled laboratory settings, MOTS-c is utilized as a tool compound for various non-clinical and in vitro studies. Below is a list of some key research applications, based on scientific investigations into its mechanisms:

  • Metabolic Homeostasis and AMPK Pathway Studies: Examined for its role in activating AMPK signaling, promoting glucose uptake, and regulating energy balance in cell-based assays and molecular models, including interactions with the folate-AICAR-AMPK pathway under metabolic stress conditions.

  • Insulin Sensitivity and Glucose Regulation Research: Investigated in preclinical rodent models to assess effects on insulin resistance, glucose tolerance, and utilization, particularly in high-fat diet-induced models of metabolic imbalance.

  • Mitochondrial Function and Stress Response Analysis: Used in biochemical and in vitro studies to explore impacts on mitochondrial biogenesis, oxidative stress protection, cellular adaptation to energy deprivation, and nuclear translocation for gene expression modulation.

  • Aging, Exercise Mimetic, and Tissue Protection Exploration: Applied in non-clinical models to evaluate influences on age-dependent physical decline, muscle homeostasis, energy expenditure, and protective effects in models of cardiac, pancreatic, or other tissue stress.

Regulatory Disclaimer This product is not a drug, not a dietary supplement, and has not been approved by the U.S. Food and Drug Administration (FDA). It is not intended for diagnosis, treatment, cure, or prevention of any disease.