SS-31 10MG
$109.00
π§ͺ SS-31 Peptide (10mg Vial)
Research Purity: β₯99% | For Laboratory Use Only
β‘ Product Overview
SS-31 (also known as Elamipretide) is a mitochondria-targeting tetrapeptide developed for advanced cellular energy and oxidative stress research.
Unlike conventional antioxidants, SS-31 selectively associates with cardiolipin in the inner mitochondrial membrane, supporting electron transport chain efficiency and reducing reactive oxygen species (ROS) generation at the source.
SS-31 is widely studied in models involving mitochondrial dysfunction, aging, metabolic stress, and high-energy-demand tissues such as muscle, cardiac, and neural cells.
π Key Benefits (Research-Based)
𧬠Mitochondrial Protection β Studied for stabilizing cardiolipin and preserving mitochondrial membrane integrity.
β‘ ATP Production Support β Associated with improved electron transport efficiency and cellular energy output.
π‘οΈ Oxidative Stress Reduction β Targets mitochondrial ROS generation rather than systemic scavenging.
πͺ Muscle & Tissue Resilience β Investigated in models of fatigue, ischemia, and cellular stress.
π§ Neuro & Cardiac Research Potential β Explored for mitochondrial support in high-demand tissues.
π Common Research Stacks (Synergistic Pairings)
SS-31 is frequently studied in combination with peptides and compounds that complement mitochondrial, metabolic, and cellular resilience pathways:
π§ͺ SS-31 + MOTS-c
β Explored for synergistic mitochondrial signaling, metabolic efficiency, and stress adaptation pathways.
𧬠SS-31 + 5-Amino-1MQ
β Studied for combined effects on mitochondrial efficiency, NADβΊ metabolism, and cellular energy regulation.
βοΈ SS-31 + SLU-PP-332
β Investigated in endurance and metabolic research models targeting mitochondrial biogenesis and oxidative capacity.
πͺ SS-31 + AOD-9604
β Examined for mitochondrial protection alongside lipid metabolism and energy utilization pathways.
π‘οΈ SS-31 + GHK-Cu
β Studied in aging and cellular repair models for combined mitochondrial protection and tissue regeneration signaling.
π All stacking references are for controlled laboratory research only and are intended to evaluate complementary biochemical pathways.
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