MOTS-C

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MOTS-C is a research-use-only peptide derived from mitochondrial transcripts, featuring potential mitochondrial and metabolic modulation properties. This compound is intended for laboratory and academic research purposes. For research use only.

Price range: $40.00 through $70.00

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⚠️ RESEARCH USE ONLY

All materials distributed by Triton Research Peptides are designated strictly for Research Use Only (RUO) and are intended exclusively for laboratory research applications. These products are not intended for human consumption, medical treatment, or veterinary use.

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MOTS-C

MOTS-C (Mitochondrial Oxidative Stress-inducible Transcript) is a research-use-only peptide derived from mitochondrial transcripts. This compound has garnered attention in academic research for its potential implications in mitochondrial function and cellular signaling, though its effects in isolated forms remain under extensive investigation. This product is intended for use in scientific research environments only and is not intended for therapeutic, diagnostic, or consumption applications.

Research Context

MOTS-C is one of several mitochondrial peptides identified through transcriptome analysis of cells exposed to oxidative stress. These peptides are derived from mitochondrial mRNA sequences that are normally suppressed in healthy cells but upregulated under stress conditions. Research has indicated that MOTS-C may play a role in the regulation of mitochondrial biogenesis, cellular metabolism, and stress responses. Its isolation and study have been pivotal in exploring mitochondrial function beyond traditional protein-based signals.

Research Overview

Initial studies examining MOTS-C in cellular and animal models have focused on its impact on mitochondrial dynamics, including changes in mitochondrial morphology, oxidative capacity, and energy metabolism. Investigations have also explored potential roles in age-related decline, given its expression patterns under stress conditions, as well as its influence on insulin signaling and muscle function. While these findings suggest potential avenues for further exploration, the peptide’s behavior in complex biological contexts remains an area of active research.

Key Research Focus Areas

  • Mitochondrial biogenesis and function
  • Regulation of cellular oxidative stress responses
  • Impact on muscle metabolism and insulin signaling
  • Exploration of age-related mitochondrial decline
  • Comparative analysis with other mitochondrial peptides

Important Notice: This product is for research use only and is not intended for human or animal consumption. Any use outside a licensed research environment is strictly prohibited. It is the user’s responsibility to ensure compliance with all applicable regulations governing research materials. Misuse or unauthorized distribution may result in legal consequences. Always conduct experiments within a controlled, regulated laboratory setting.

For research use only. Not for human or animal consumption.

Size

10MG, 40MG

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