For Research Purposes Only

MOTS-c

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MOTS-c is a research-use-only peptide involved in mitochondrial function and metabolism; for laboratory use only.

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Research Use Disclaimer

Research Use Only: All products offered are intended strictly for laboratory research purposes. Products are not for human consumption and are not intended for diagnostic, therapeutic, or medical use. By purchasing from our website, customers confirm they are qualified researchers or laboratories and understand the intended research-use designation.

MOTS-c: A Key Player in Metabolic Health

MOTS-c (Mitochondrial OXPHOS Specific Transcription Factor-C) is a unique mitochondrial-derived peptide associated with metabolic health and longevity. It plays a crucial role in the regulation of cellular energy metabolism, particularly under conditions of stress or exercise.

Research Context

MOTS-c was first identified as a transcription factor specific to mitochondria that responds to physical activity and fasting. This peptide is released from muscle cells into circulation where it modulates systemic metabolic responses, including enhancing insulin sensitivity and reducing inflammation. Its discovery has opened up new avenues for understanding the molecular mechanisms underlying metabolic health.

Research Overview

MOTS-c research primarily focuses on its role in energy metabolism, particularly in skeletal muscle and adipose tissue. Studies have shown that MOTS-c can improve mitochondrial function and reduce oxidative stress, contributing to overall metabolic well-being. Its effects are often studied through various experimental models including cell cultures and animal studies.

Key Research Focus Areas

  • Metabolic Health: Investigation into how MOTS-c influences insulin sensitivity, glucose metabolism, and lipid homeostasis in both healthy and metabolic syndrome conditions.
  • Inflammation Regulation: Examination of the anti-inflammatory properties of MOTS-c and its potential to modulate immune responses in tissues.
  • Mitochondrial Function: Analysis of the impact of MOTS-c on mitochondrial biogenesis, dynamics, and function under various physiological conditions.

Compliance Disclaimer

This product is intended for research use only. It should not be used for human or animal consumption. Any use beyond this scope must comply with relevant regulatory guidelines and ethical standards in academic and industrial research environments.

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Lab Report
Date Added :
08/27/2026

MOTS-c: A Key Player in Metabolic Health

MOTS-c (Mitochondrial OXPHOS Specific Transcription Factor-C) is a unique mitochondrial-derived peptide associated with metabolic health and longevity. It plays a crucial role in the regulation of cellular energy metabolism, particularly under conditions of stress or exercise.

Research Context

MOTS-c was first identified as a transcription factor specific to mitochondria that responds to physical activity and fasting. This peptide is released from muscle cells into circulation where it modulates systemic metabolic responses, including enhancing insulin sensitivity and reducing inflammation. Its discovery has opened up new avenues for understanding the molecular mechanisms underlying metabolic health.

Research Overview

MOTS-c research primarily focuses on its role in energy metabolism, particularly in skeletal muscle and adipose tissue. Studies have shown that MOTS-c can improve mitochondrial function and reduce oxidative stress, contributing to overall metabolic well-being. Its effects are often studied through various experimental models including cell cultures and animal studies.

Key Research Focus Areas

  • Metabolic Health: Investigation into how MOTS-c influences insulin sensitivity, glucose metabolism, and lipid homeostasis in both healthy and metabolic syndrome conditions.
  • Inflammation Regulation: Examination of the anti-inflammatory properties of MOTS-c and its potential to modulate immune responses in tissues.
  • Mitochondrial Function: Analysis of the impact of MOTS-c on mitochondrial biogenesis, dynamics, and function under various physiological conditions.

Compliance Disclaimer

This product is intended for research use only. It should not be used for human or animal consumption. Any use beyond this scope must comply with relevant regulatory guidelines and ethical standards in academic and industrial research environments.

Size

10MG, 40MG

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