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MOTS-c 40mg Lyophilized Vial (Research Grade)
This premium, high-purity MOTS-c formulation is engineered as a sterile lyophilized powder for controlled in vitro scientific evaluation. Each 40mg vial provides optimal structural stability and chemical consistency, ensuring precise handling for advanced laboratory investigations.
As a prominent mitochondrial-derived peptide (MDP) encoded within the mitochondrial 12S rRNA open reading frame, MOTS-c is a key subject of study in cellular bioenergetics and metabolic signaling networks.
Key Research Applications:
Cellular Homeostasis & Energetics: Utilized in laboratory assays to study cellular adaptation to metabolic stress and energy regulation mechanism pathways.
AMPK Pathway Dynamics: Frequently researched in molecular biology settings for its direct interaction with and activation of the AMP-activated protein kinase (AMPK) pathway.
Metabolic Signaling Networks: Investigated in cellular models exploring glucose utilization, lipid metabolism, and mitochondrial-nuclear communication frameworks.
This product is manufactured to rigorous analytical standards to deliver reproducible, reliable data across diverse experimental and analytical workflows.
Important Notice: For In-Vitro Laboratory Research Use Only. This product is a raw chemical reagent intended exclusively for evaluation by trained professionals. Not for human or animal consumption, therapeutic, or diagnostic use.
This premium, high-purity MOTS-c formulation is engineered as a sterile lyophilized powder for controlled in vitro scientific evaluation. Each 40mg vial provides optimal structural stability and chemical consistency, ensuring precise handling for advanced laboratory investigations.
As a prominent mitochondrial-derived peptide (MDP) encoded within the mitochondrial 12S rRNA open reading frame, MOTS-c is a key subject of study in cellular bioenergetics and metabolic signaling networks.
Key Research Applications:
Cellular Homeostasis & Energetics: Utilized in laboratory assays to study cellular adaptation to metabolic stress and energy regulation mechanism pathways.
AMPK Pathway Dynamics: Frequently researched in molecular biology settings for its direct interaction with and activation of the AMP-activated protein kinase (AMPK) pathway.
Metabolic Signaling Networks: Investigated in cellular models exploring glucose utilization, lipid metabolism, and mitochondrial-nuclear communication frameworks.
This product is manufactured to rigorous analytical standards to deliver reproducible, reliable data across diverse experimental and analytical workflows.
Important Notice: For In-Vitro Laboratory Research Use Only. This product is a raw chemical reagent intended exclusively for evaluation by trained professionals. Not for human or animal consumption, therapeutic, or diagnostic use.