MOTS-C

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MOTS-C is a research-use-only mitochondrial-derived peptide studied for its role in metabolic regulation and cellular energy pathways. This compound supports laboratory investigation into mitochondrial signaling and metabolic homeostasis. For research use only.

Price range: $49.99 through $149.99

⚠️ RESEARCH USE ONLY

This product is for R&D purposes only and is not approved for human or veterinary use.

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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

MOTS-C is a mitochondrial-derived peptide investigated in research settings for its involvement in metabolic regulation, cellular energy balance, and stress response pathways. As part of the mitochondrial genome-encoded peptides, MOTS-C is studied for its influence on metabolic signaling and adaptive cellular processes.

Research Context

MOTS-C plays a role in mitochondrial-to-nuclear communication, contributing to the regulation of energy metabolism and cellular homeostasis. In laboratory studies, this peptide is explored for its interaction with metabolic pathways, including glucose utilization and cellular stress adaptation.

Research Overview

Preclinical and experimental research involving MOTS-C focuses on understanding its regulatory functions in metabolic systems. Key areas of investigation include:

  • Cellular energy metabolism and mitochondrial signaling
  • Glucose regulation and metabolic pathway modulation
  • Stress response and adaptive cellular mechanisms
  • Interaction between mitochondrial and nuclear signaling pathways

Key Research Focus Areas

Mitochondrial Signaling Studies:
Exploration of communication pathways between mitochondria and the nucleus in cellular regulation.

Metabolic Regulation Research:
Investigation into how MOTS-C influences glucose metabolism and energy balance in experimental models.

Cellular Stress Response:
Evaluation of adaptive mechanisms activated under metabolic or environmental stress conditions.

Homeostasis and Energy Balance:
Study of systemic and cellular processes involved in maintaining metabolic equilibrium.

This product is intended strictly for laboratory and research purposes. It is not designed for human or animal use.

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

Store under appropriate laboratory conditions to preserve peptide stability and functional integrity.

Date Added :
04/06/2026

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MOTS-C

MOTS-C is a mitochondrial-derived peptide investigated in research settings for its involvement in metabolic regulation, cellular energy balance, and stress response pathways. As part of the mitochondrial genome-encoded peptides, MOTS-C is studied for its influence on metabolic signaling and adaptive cellular processes.

Research Context

MOTS-C plays a role in mitochondrial-to-nuclear communication, contributing to the regulation of energy metabolism and cellular homeostasis. In laboratory studies, this peptide is explored for its interaction with metabolic pathways, including glucose utilization and cellular stress adaptation.

Research Overview

Preclinical and experimental research involving MOTS-C focuses on understanding its regulatory functions in metabolic systems. Key areas of investigation include:

  • Cellular energy metabolism and mitochondrial signaling
  • Glucose regulation and metabolic pathway modulation
  • Stress response and adaptive cellular mechanisms
  • Interaction between mitochondrial and nuclear signaling pathways

Key Research Focus Areas

Mitochondrial Signaling Studies:
Exploration of communication pathways between mitochondria and the nucleus in cellular regulation.

Metabolic Regulation Research:
Investigation into how MOTS-C influences glucose metabolism and energy balance in experimental models.

Cellular Stress Response:
Evaluation of adaptive mechanisms activated under metabolic or environmental stress conditions.

Homeostasis and Energy Balance:
Study of systemic and cellular processes involved in maintaining metabolic equilibrium.

This product is intended strictly for laboratory and research purposes. It is not designed for human or animal use.

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

Store under appropriate laboratory conditions to preserve peptide stability and functional integrity.

Size

10MG, 40MG

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