SLU-PP-332 + BAM-15

$70.00

Description


SLU-PP-332 + BAM15 (ERR Pan-Agonist & Mitochondrial Uncoupler Research Blend)

Form: Capsules
Concentration: 250 mcg SLU-PP-332 + 50 mg BAM15 per tablet
Quantity per Bottle: 60 capsules

Molecular Formula (SLU-PP-332): C₁₈H₁₄N₂O₂
Molecular Weight (SLU-PP-332): 290.32 g/mol
CAS Number (SLU-PP-332): 303760-60-3

Molecular Formula (BAM15): C₁₅H₁₃F₂N₃O₂S
Molecular Weight (BAM15): 337.34 g/mol
CAS Number (BAM15): 1208313-97-9

Purity: ≥98% (HPLC)
Storage: Store in a cool, dry place away from light and moisture.


Description

This oral blend combines SLU-PP-332, a pan-agonist of estrogen-related receptors (ERRα/β/γ), with BAM15, a mitochondrial protonophore (uncoupler), to synergistically enhance oxidative metabolism, energy expenditure, and mitochondrial biogenesis in metabolic research models.

SLU-PP-332 acts as an exercise-mimetic compound, activating ERR-mediated transcriptional programs that increase mitochondrial function, fatty-acid oxidation, and endurance.
BAM15 uncouples oxidative phosphorylation by facilitating proton leak across the mitochondrial inner membrane, increasing caloric expenditure while maintaining low ROS levels.

Together, they form a potent dual-mechanism model for exploring exercise-mimetic metabolic activation, fat oxidation, and mitochondrial efficiency optimization.
This formulation allows controlled oral delivery for comparative studies of ERR receptor signaling and bioenergetic uncoupling synergy.


Intended Use

This product is intended for laboratory research use only.
It is not for human consumption, diagnostic, or therapeutic applications.
All handling should be performed by qualified professionals in a controlled research environment.


Key Research Applications

  • Investigation of dual ERR activation and mitochondrial uncoupling synergy

  • Studies on endurance-mimetic compounds and oxidative metabolism

  • Research on fat oxidation, energy expenditure, and mitochondrial adaptation

  • Analysis of exercise-mimetic and bioenergetic modulation pathways

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