PEPTIDE NOVA

MOTS-C 10MG

Original price was: $78.99.Current price is: $58.99.

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Description

Product Overview

MOTS-C is a synthetic mitochondrial-derived peptide extensively referenced in scientific literature and studied in peptide research related to cellular signaling, metabolic pathway regulation, and intracellular communication mechanisms. Within controlled laboratory and preclinical research environments, MOTS-C is investigated for its interactions with molecular signaling cascades, peptide stability, and intracellular regulatory networks.

As a laboratory peptide compound, MOTS-C is utilized in experimental research to study peptide signaling pathways, receptor binding interactions, and molecular regulatory mechanisms. Researchers focus on its peptide molecular structure and amino acid sequence to analyze complex signaling dynamics in preclinical and laboratory research models.

MOTS-C is a synthetic 16-amino-acid peptide derived from mitochondrial DNA, classified as a synthetic mitochondrial signaling peptide. It is designed for laboratory research on intracellular signaling pathways, mitochondrial regulatory mechanisms, and peptide-mediated molecular communication.

In research contexts, MOTS-C is studied for its interactions with cellular receptors, intracellular signaling cascades, and molecular regulatory systems. Researchers utilize this peptide to examine peptide stability, receptor interactions, and intracellular molecular signaling under controlled laboratory conditions.

Scientific literature references MOTS-C in several laboratory peptide research areas, including:

  • peptide signaling pathways

  • mitochondrial signaling peptide activity

  • receptor binding interactions

  • intracellular signaling cascade analysis

  • metabolic pathway research

  • molecular signaling mechanisms

  • peptide stability and structural activity

  • laboratory peptide characterization

  • preclinical peptide study setup

These areas are explored in preclinical and controlled laboratory research models.

Compound Name: MOTS-C
Peptide Classification: Synthetic mitochondrial signaling peptide
Molecular Formula: C77H123N23O19
Molecular Weight: ~2170 g/mol
Amino Acid Sequence: Met-Arg-Trp-Gln-Glu-Met-Gly-Tyr-Ile-Phe-Tyr-Pro-Arg-Lys-Leu-Arg
CAS Number: 1448939-40-5 (referenced in scientific literature)

MOTS-C is a synthetic 16-amino-acid peptide, engineered for laboratory investigation of mitochondrial and intracellular signaling pathways. Its peptide molecular structure allows researchers to study peptide-receptor interactions, intracellular signaling cascades, and structural stability in preclinical research models.

Scientific literature has explored MOTS-C in experimental and preclinical research investigating mitochondrial signaling pathways, intracellular molecular interactions, and receptor-mediated signaling mechanisms. Studies focus on peptide-mediated intracellular signaling cascades and receptor interactions within controlled laboratory environments.

In experimental research models, MOTS-C has been examined in studies related to peptide signaling pathways, receptor binding dynamics, and molecular regulatory networks. These investigations are conducted in preclinical and laboratory research settings to analyze peptide signaling interactions and intracellular communication mechanisms.

Such research contributes to broader scientific understanding of peptide-mediated signaling pathways, mitochondrial receptor interactions, and intracellular communication systems within experimental biological systems.

Compound Name: MOTS-C
Peptide Classification: Synthetic mitochondrial signaling peptide
Format: Lyophilized Powder
Quantity: 10MG
Research Category: Peptide research / mitochondrial signaling research / molecular pathway study
Storage Recommendations: Store under refrigerated laboratory conditions in a cool, dry environment protected from light and moisture. Long-term storage under controlled laboratory conditions is recommended.

Research Use Only. Not for human or veterinary use. Not approved by the FDA and not intended to diagnose, treat, cure, or prevent any disease.

Links To Research Studies

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For research purposes only. Not for consumption, clinical use, or diagnostic purposes. Buyer assumes all responsibility for proper handling and use in compliance with applicable regulations.

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