MOTS-C 10MG

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MOTS-C is a synthetic peptide derived from mitochondrial protein sequences, offering potential exploratory applications in cellular and biochemical research.

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Research Use Disclaimer

Every serious peptide company prominently displays this. Example Research Use Only All products offered by Ascend Biologics 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 10MG – Research-Use-Only Peptide

MOTS-C 10MG

MOTS-C (Mitochondrial Targeting Sequence of Fish Ovalbumin) is a peptide derived from the mitochondrial-targeting sequence of ovalbumin in teleost fish. This peptide is recognized for its potential mitochondrial-targeting capabilities, which have sparked interest in its role in mitochondrial function studies. The 10mg formulation is intended for researchers working in the fields of biochemistry, cell biology, and mitochondrial biology.

Research Context

MOTS-C is a short peptide sequence that has been identified for its ability to localize to mitochondria. Initially discovered in teleost fish, it has been extensively studied for its potential role in mitochondrial biogenesis, metabolism, and cellular stress responses. Due to its distinct mitochondrial targeting mechanism, researchers have investigated its utility in various experimental settings, including its effects on mitochondrial function in cultured cells and animal models.

Research Overview

MOTS-C has emerged as a subject of interest in mitochondrial biology research due to its ability to induce mitochondrial biogenesis and improve mitochondrial function. Initial studies in cultured cells demonstrated that MOTS-C can enhance mitochondrial respiration and reduce oxidative stress. Its mitochondrial localization suggests potential applications in the investigation of age-related mitochondrial decline, metabolic diseases, and neurodegenerative conditions. The peptide’s structure and properties make it a valuable tool for researchers exploring mitochondrial dynamics and cellular energetics.

Key Research Focus Areas

  • Mitochondrial Biogenesis and Function
  • Cellular Stress Responses and Oxidative Damage
  • Metabolic Regulation and Energy Homeostasis
  • Investigations into Aging and Mitochondrial Decline
  • Model Organisms and Cell Culture Studies

Researchers using MOTS-C should follow standard laboratory protocols and ensure compliance with ethical guidelines governing the use of peptides in biological studies. This peptide is intended for academic and research purposes only and should not be used for therapeutic or non-research applications.

Important Compliance Notice

For research use only. Not for human or animal consumption. This product is intended solely for academic and scientific investigation within a regulated research environment. Users are responsible for adhering to all applicable local, national, and international laws and regulations governing research materials. Misuse or unauthorized distribution of this product is strictly prohibited.

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At Hollywood Peptides, we provide more than just industry-leading compounds; we provide the certainty and excellence required for groundbreaking results. We recognize that in the world of science, there is no room for error. That is why every formulation we offer is subjected to stringent validation and certification protocols.
 
Lab Report
Date Added :
03/15/2026

MOTS-C 10MG – Research-Use-Only Peptide

MOTS-C 10MG

MOTS-C (Mitochondrial Targeting Sequence of Fish Ovalbumin) is a peptide derived from the mitochondrial-targeting sequence of ovalbumin in teleost fish. This peptide is recognized for its potential mitochondrial-targeting capabilities, which have sparked interest in its role in mitochondrial function studies. The 10mg formulation is intended for researchers working in the fields of biochemistry, cell biology, and mitochondrial biology.

Research Context

MOTS-C is a short peptide sequence that has been identified for its ability to localize to mitochondria. Initially discovered in teleost fish, it has been extensively studied for its potential role in mitochondrial biogenesis, metabolism, and cellular stress responses. Due to its distinct mitochondrial targeting mechanism, researchers have investigated its utility in various experimental settings, including its effects on mitochondrial function in cultured cells and animal models.

Research Overview

MOTS-C has emerged as a subject of interest in mitochondrial biology research due to its ability to induce mitochondrial biogenesis and improve mitochondrial function. Initial studies in cultured cells demonstrated that MOTS-C can enhance mitochondrial respiration and reduce oxidative stress. Its mitochondrial localization suggests potential applications in the investigation of age-related mitochondrial decline, metabolic diseases, and neurodegenerative conditions. The peptide’s structure and properties make it a valuable tool for researchers exploring mitochondrial dynamics and cellular energetics.

Key Research Focus Areas

  • Mitochondrial Biogenesis and Function
  • Cellular Stress Responses and Oxidative Damage
  • Metabolic Regulation and Energy Homeostasis
  • Investigations into Aging and Mitochondrial Decline
  • Model Organisms and Cell Culture Studies

Researchers using MOTS-C should follow standard laboratory protocols and ensure compliance with ethical guidelines governing the use of peptides in biological studies. This peptide is intended for academic and research purposes only and should not be used for therapeutic or non-research applications.

Important Compliance Notice

For research use only. Not for human or animal consumption. This product is intended solely for academic and scientific investigation within a regulated research environment. Users are responsible for adhering to all applicable local, national, and international laws and regulations governing research materials. Misuse or unauthorized distribution of this product is strictly prohibited.

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