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MOTS-C 30MG

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MOTS-C 30MG is a research-use-only peptide derived from mitochondrial RNA, offering potential explorations in metabolic and cellular studies. This compound is intended for laboratory-use context only, not for human or animal consumption. For research use only.

$75.00

ℹ️ RESEARCH USE ONLY

For research purposes only. Not for human or animal use & not FDA-approved. By purchasing, you confirm you are 21 or older and qualified researcher

MOTS-C 30MG

MOTS-C (Mitochondrial-derived peptides derived from the mitochondrial translation initiation factor 4A, encoded by the mitochondrial gene MT-ATP6) is a research-use-only compound of interest in the study of mitochondrial function and aging.

Research Context

MOTS-C is a naturally occurring peptide derived from the mitochondrial genome, specifically from the gene MT-ATP6, which encodes a subunit of the ATP synthase complex. Initially discovered through its expression in mammalian mitochondria, research into MOTS-C has expanded to investigate its potential role in cellular homeostasis, energy metabolism, and longevity. Given its mitochondrial origin, MOTS-C has been explored in preclinical studies for its potential effects on mitochondrial biogenesis, resistance to oxidative stress, and metabolic regulation.

Research Overview

MOTS-C has gained prominence in the scientific community due to its distinct mitochondrial signaling profile. Unlike other peptides studied for longevity or metabolic effects, MOTS-C is unique in being encoded entirely within the mitochondrial genome. Early studies in animal models have suggested that MOTS-C may enhance mitochondrial function, improve mitochondrial dynamics, and potentially modulate aging-related processes. These findings have led to increased interest in its biochemical mechanisms, though further research is required to fully elucidate its effects in vivo.

Key Research Focus Areas

  • Mitochondrial Biogenesis and Function
  • Oxidative Stress Resistance and Antioxidative Properties
  • Metabolic Regulation and Energy Homeostasis
  • Longevity and Aging-Related Mechanisms
  • Impact on Mitochondrial Quality Control Mechanisms

This peptide is provided for research purposes only and is intended for academic or institutional investigation. It should be handled with caution and used strictly in accordance with approved experimental protocols.

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

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MOTS-C 30MG

MOTS-C (Mitochondrial-derived peptides derived from the mitochondrial translation initiation factor 4A, encoded by the mitochondrial gene MT-ATP6) is a research-use-only compound of interest in the study of mitochondrial function and aging.

Research Context

MOTS-C is a naturally occurring peptide derived from the mitochondrial genome, specifically from the gene MT-ATP6, which encodes a subunit of the ATP synthase complex. Initially discovered through its expression in mammalian mitochondria, research into MOTS-C has expanded to investigate its potential role in cellular homeostasis, energy metabolism, and longevity. Given its mitochondrial origin, MOTS-C has been explored in preclinical studies for its potential effects on mitochondrial biogenesis, resistance to oxidative stress, and metabolic regulation.

Research Overview

MOTS-C has gained prominence in the scientific community due to its distinct mitochondrial signaling profile. Unlike other peptides studied for longevity or metabolic effects, MOTS-C is unique in being encoded entirely within the mitochondrial genome. Early studies in animal models have suggested that MOTS-C may enhance mitochondrial function, improve mitochondrial dynamics, and potentially modulate aging-related processes. These findings have led to increased interest in its biochemical mechanisms, though further research is required to fully elucidate its effects in vivo.

Key Research Focus Areas

  • Mitochondrial Biogenesis and Function
  • Oxidative Stress Resistance and Antioxidative Properties
  • Metabolic Regulation and Energy Homeostasis
  • Longevity and Aging-Related Mechanisms
  • Impact on Mitochondrial Quality Control Mechanisms

This peptide is provided for research purposes only and is intended for academic or institutional investigation. It should be handled with caution and used strictly in accordance with approved experimental protocols.

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

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