MOTS-C 10mg

$39.99

MOTS-C is a research-grade mitochondrial-derived peptide studied for its role in AMPK activation and metabolic homeostasis. Researchers use this compound in structured research focused on cellular energy regulation and metabolic pathways.

  • Synthetic peptide designed for controlled laboratory research applications
  • Used in studies focused on AMPK signaling and mitochondrial function
  • Suitable for controlled and repeatable research workflows
SKU: PPMD-MOTSC Category:

Description

MOTS-C Research Peptide

MOTS-C is a synthetic mitochondrial-derived peptide supplied for controlled laboratory investigation. This 16-amino acid compound, encoded by mitochondrial 12S rRNA, is studied for its involvement in AMPK activation and metabolic homeostasis. Its defined sequence and structure allow researchers to conduct repeatable studies under standardized conditions, examining its specific mechanisms within cellular systems. The compound is of interest in investigations into cellular energy regulation.

Because MOTS-C is a precisely defined compound, researchers value its use in controlled environments to ensure data consistency. Studies often focus on its signaling patterns and interaction behavior within cellular models, particularly concerning mitochondrial regulation and energy metabolism. The peptide’s consistent composition facilitates investigations into its specific mechanisms of action, contributing to a clearer understanding of its role in cellular physiology without extraneous variables.

In laboratory settings, MOTS-C is handled and prepared following standard peptide preparation and safety procedures. It is supplied as a lyophilized powder, ensuring stability for transport and storage. For reconstitution, bacteriostatic water is recommended. After reconstitution, the solution should be refrigerated at 2-8°C. For extended storage, freezing at -20°C is advised to maintain compound integrity for long-term research projects.

The consistent composition of MOTS-C ensures reliability and reduced variation in experimental outcomes, making it highly compatible with structured research workflows. Its defined properties make it suitable for long-term laboratory projects requiring stable and reproducible compound behavior. This consistency is critical for generating robust and comparable data across multiple studies and experimental batches.

Ongoing research continues to include MOTS-C due to its defined sequence and stable behavior. Its suitability for controlled research models allows for precise investigation into its mechanisms, contributing valuable data to the scientific understanding of mitochondrial signaling pathways.

Important Notice: MOTS-C 10mg is provided strictly for research use only. This product is not intended for human or animal use, clinical applications, diagnostic procedures, or consumption of any kind. All research must be conducted by qualified professionals in appropriate laboratory environments and in compliance with applicable regulations and guidelines.

Frequently Asked Questions

What is MOTS-C?

MOTS-C is a mitochondrial-derived peptide (MDP) composed of 16 amino acids. It is endogenously encoded by the mitochondrial 12S rRNA gene. Discovered through bioinformatic analysis, MOTS-C represents a class of peptides originating from the mitochondrial genome, distinct from nuclear-encoded proteins. In research, it is studied for its unique cellular signaling properties.

How does MOTS-C relate to mitochondrial function?

In research models, MOTS-C is studied for its interaction with mitochondrial processes. It is hypothesized to play a role in regulating mitochondrial metabolism and energy homeostasis, potentially influencing cellular resilience. As a mitochondrial-derived peptide, its presence and activity are intrinsically linked to the organelle’s function, making it a key focus in studies exploring mitochondrial signaling pathways within various cell types.

What biological systems are studied using MOTS-C?

MOTS-C is utilized in research to investigate a range of biological systems, primarily those involved in metabolic regulation and cellular energy homeostasis. Studies frequently examine its effects in in vitro cell cultures and in vivo animal models relevant to skeletal muscle, liver, and adipose tissue. The compound aids in understanding systemic metabolic pathways and the intricate interplay of mitochondrial function across different physiological contexts in controlled research settings.

What is the primary mechanism of action studied for MOTS-C?

The primary mechanism of action studied for MOTS-C in research involves its capacity to activate AMP-activated protein kinase (AMPK). This activation is a central focus for understanding its role in metabolic regulation, including glucose uptake and utilization, as well as fatty acid oxidation. Through AMPK signaling, MOTS-C is hypothesized to influence cellular energy balance and metabolic flexibility, observed in controlled laboratory experiments.

Why is MOTS-C of interest in metabolic research?

MOTS-C is of significant interest in metabolic research due to its unique origin as a mitochondrial-derived peptide and its observed influence on cellular energy metabolism. Its study offers insights into novel regulatory pathways that extend beyond traditional hormone and growth factor signaling. Researchers are particularly interested in its potential to modulate glucose and lipid metabolism, providing a deeper understanding of metabolic homeostasis and cellular resilience in research models.

How should MOTS-C be stored for research purposes?

For optimal stability in research settings, MOTS-C is typically supplied as a lyophilized powder and should be stored in a cool, dry place away from direct light. Upon reconstitution with an appropriate solvent, such as bacteriostatic water, the solution should be refrigerated at 2-8°C. For longer-term storage exceeding several weeks, aliquoting and freezing at -20°C is recommended to preserve peptide integrity and activity for future experiments.

Additional information

Weight 0.1 lbs

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