SLU-PP-332 | CAS Number: 303760-60-3 | ERR agonist – Also known as: SLUPP332, CHEMBL4208749, SLUPP, Metabolic Boost, Regenoshred SLU-PP-332, SCHEMBL12937827, SLU PP 332, BDBM50455424, STK082756
SLU-PP-332 functions as a pan-ERR (estrogen receptor-related receptor) agonist is a cutting-edge small molecule with exercise-mimetic properties, engineered to activate key cellular pathways associated with muscle hypertrophy, endurance, and metabolic efficiency. By targeting AMP-activated protein kinase (AMPK) and peroxisome proliferator-activated receptor gamma coactivator (PGC-1α), SLU-PP-332 enhances mitochondrial biogenesis and oxidative capacity, promoting improved energy utilization and muscle performance in test subjects.
In laboratory settings, SLU-PP-332 demonstrates potential for mimicking the beneficial effects of physical activity without the need for strenuous exercise, offering a promising avenue for investigating metabolic regulation and muscle physiology. Its impact on cellular stress response pathways further positions SLU-PP-332 as a valuable research tool in the study of aging, muscle atrophy, and metabolic diseases in test subjects in research lab settings.
SLU-PP-332 | CAS Number: 303760-60-3 | ERR agonist – Also known as: SLUPP332, CHEMBL4208749, SLUPP, Metabolic Boost, Regenoshred SLU-PP-332, SCHEMBL12937827, SLU PP 332, BDBM50455424, STK082756
SLU-PP-332 functions as a pan-ERR (estrogen receptor-related receptor) agonist is a cutting-edge small molecule with exercise-mimetic properties, engineered to activate key cellular pathways associated with muscle hypertrophy, endurance, and metabolic efficiency. By targeting AMP-activated protein kinase (AMPK) and peroxisome proliferator-activated receptor gamma coactivator (PGC-1α), SLU-PP-332 enhances mitochondrial biogenesis and oxidative capacity, promoting improved energy utilization and muscle performance in test subjects.
In laboratory settings, SLU-PP-332 demonstrates potential for mimicking the beneficial effects of physical activity without the need for strenuous exercise, offering a promising avenue for investigating metabolic regulation and muscle physiology. Its impact on cellular stress response pathways further positions SLU-PP-332 as a valuable research tool in the study of aging, muscle atrophy, and metabolic diseases in test subjects in research lab settings.