MOTS-C (10 mg Vial)

MOTS-C Research Reference

MOTS-C is referenced at 200 mcg–1 mg daily in educational research settings. A 10 mg vial prepared with bacteriostatic water provides approximately 3.33 mg/mL. Research references discuss gradual adjustment over roughly 10 weeks. This information is provided for research and educational use only.
MOTS-C is a 16-amino-acid mitochondrial-derived peptide (MDP) that acts as a metabolic regulator, primarily through AMPK activation. Preclinical studies suggest roles related to insulin sensitivity, fat oxidation, exercise capacity, and age-related metabolic pathways. No completed human clinical trials are currently available. This educational reference presents general scientific information aligned with preclinical findings.
Research context: For evidence on mechanisms, human and preclinical research, limitations, and safety information, read MOTS-C Peptide: Benefits, Uses, Research Background.

Educational guide for preparation and daily reference information

Standard / Gradual Approach (3 mL = ~3.33 mg/mL)

WeekDaily Research (mcg)Units (mL)
Weeks 1–2200 mcg (0.2 mg)6 units (0.06 mL)
Weeks 3–4400 mcg (0.4 mg)12 units (0.12 mL)
Weeks 5–6600 mcg (0.6 mg)18 units (0.18 mL)
Weeks 7–8800 mcg (0.8 mg)24 units (0.24 mL)
Weeks 9–10+1,000 mcg (1.0 mg)30 units (0.30 mL)
Frequency: Apply once daily subcutaneously. This schedule uses the largest practical dilution (3.0 mL) to maintain accurate measurement. Stay at each reference level for approximately 2 weeks before increasing, and monitor for any adverse responses. For <10-unit (≤0.10 mL) applications, consider 30- or 50-unit measurement devices for improved readability.

Preparation Steps

Important: This guide is for educational purposes only and is not medical advice. MOTS-C is an experimental compound for research reference only. Not for human consumption.

Plan based on an 8–12 week daily research schedule with gradual adjustment.

Concise summary of the once-daily research schedule.

Suggested daily adjustment approach based on available research references.

Proper storage preserves peptide quality and stability.

Practical considerations for consistency and safety.

MOTS-C functions as a metabolic “stress signal” that helps optimize energy usage during nutrient stress or exercise. Its primary mechanism involves AMPK activation through cellular energy pathways, supporting glucose uptake, fatty-acid oxidation, and mitochondrial respiration. MOTS-C may also influence cellular stress responses and antioxidant pathways. Research indicates potential roles related to mitochondrial function, metabolic regulation, and age-associated changes.

Observations from preclinical literature (no human clinical trials completed to date).

Note: These benefits have been demonstrated only in controlled research settings (mice or cells). Translation to humans requires clinical studies.

Complementary strategies for supporting outcomes based on MOTS-C metabolic mechanisms.

General subcutaneous guidance from clinical best-practice resources.

This content is intended for therapeutic educational purposes only and does not constitute medical advice, diagnosis, or treatment. MOTS-C is an experimental compound for research use only. No clinical trials have been completed in humans. Always consult qualified healthcare providers before starting any new therapy.

Cell Metabolism (2015)

— The mitochondrial-derived peptide MOTS-C promotes metabolic homeostasis and reduces obesity and insulin resistance (Lee C, Zeng J, Drew BG, et al.)

 

Journal of Translational Medicine (2023)

— Mitochondria-derived peptide MOTS-C: effects and mechanisms related to stress, metabolism and aging (Wan W, Zhang L, Lin Y, et al.)

Journal of Molecular Medicine (2019)

— MOTS-C peptide regulates metabolic homeostasis to prevent ovariectomy-induced metabolic dysfunction (Hu Y, Wei W, Zhai Y, et al.)

Nature Communications (2021)

— MOTS-C is an exercise-induced mitochondrial-encoded regulator of age-dependent physical decline and muscle homeostasis (Reynolds JC, Lai RW, Woodhead JST, et al.)

 

Frontiers in Physiology (2023)

— Role of MOTS-C in the regulation of bone metabolism (Yi X, Hu G, Yang Y, et al.)

 

Cognitive Vitality Reports (2021)

— MOTS-C (Cognitive Vitality Profile) — Alzheimer’s Drug Discovery Foundation (ADDF)

USADA Spirit of Sport (2023)

— What is the MOTS-C peptide? — U.S. Anti-Doping Agency educational article

 

Experimental & Molecular Medicine (2025)

— Mitochondrial-encoded peptide MOTS-C prevents pancreatic islet cell senescence to delay diabetes (Kong BS, Lee H, Ly S, et al.)

MedlinePlus Medical Encyclopedia (2023)

— Subcutaneous (SQ) application guidance — patient instructions for proper technique