Description
SLU-PP-332 | 5 mg Research Compound — AminoVault
Advance metabolic, mitochondrial, and exercise-mimetic research with SLU-PP-332, a synthetic small-molecule pan-ERR agonist studied for its effects on estrogen-related receptor signaling, mitochondrial function, fatty-acid oxidation, and skeletal muscle bioenergetics.
Often searched alongside research peptides, SLU-PP-332 is technically a small-molecule research compound, not a peptide. It is designed for controlled laboratory investigation into ERRα/β/γ pathways and their role in exercise-like metabolic adaptations.
For Laboratory Research Use Only. Not intended for human consumption, therapeutic use, diagnostic use, or veterinary use.
Key Features
- 5 mg Research Vial — Suitable for controlled in-vitro and preclinical study designs
- ERR Pathway Focus — Studied as an agonist of estrogen-related receptors ERRα, ERRβ, and ERRγ
- Mitochondrial Research Applications — Investigated for effects on mitochondrial respiration, oxidative metabolism, and energy production pathways
- Exercise-Mimetic Signaling — Researched for activation of gene programs associated with aerobic exercise adaptation
- Metabolic Pathway Studies — Used in models examining fatty-acid oxidation, energy expenditure, insulin sensitivity, and metabolic syndrome markers
- Skeletal Muscle Bioenergetics — Explored for effects on oxidative muscle fiber phenotype and endurance-related cellular signaling
- COA Included — Lot-level analytical documentation available for identity and purity verification
- AminoVault Quality Standard — Supplied for laboratory research applications only
What Is SLU-PP-332?
SLU-PP-332 is a synthetic research compound developed to activate the estrogen-related receptor (ERR) family of nuclear receptors. ERRs are transcriptional regulators involved in cellular energy metabolism, mitochondrial function, oxidative phosphorylation, and fatty-acid utilization.
Because exercise naturally activates many of these metabolic pathways, SLU-PP-332 has gained attention in preclinical research as an exercise-mimetic compound—a tool used to study how ERR activation may reproduce select molecular signatures associated with endurance-style exercise.
Mechanistic Overview
In laboratory models, SLU-PP-332 is investigated for its ability to activate ERR-dependent transcriptional programs linked to:
- Mitochondrial Respiration: Supporting research into cellular oxygen utilization and ATP-producing pathways
- Fatty-Acid Oxidation: Examining how ERR signaling influences lipid metabolism and fuel selection
- Oxidative Muscle Phenotype: Studying shifts toward fatigue-resistant, oxidative skeletal muscle characteristics
- Energy Expenditure Models: Exploring whole-body metabolic signaling in preclinical systems
- Exercise-Response Gene Programs: Investigating genes associated with aerobic training adaptation and mitochondrial remodeling
Its primary research interest centers on the relationship between ERR activation, PGC-1α-linked signaling, and metabolic adaptation.
Research Highlights
Exercise-Mimetic Research
Preclinical studies suggest SLU-PP-332 can activate aerobic exercise-like gene programs in skeletal muscle models. Researchers use it to study mitochondrial function, oxidative fiber markers, and endurance-associated metabolic pathways.
Mitochondrial Function & Bioenergetics
SLU-PP-332 is studied for its influence on mitochondrial respiration, oxidative phosphorylation, and cellular energy production. These pathways are central to research involving metabolic health, aging, fatigue, and energy homeostasis.
Fatty-Acid Oxidation & Metabolic Pathways
Research models have examined SLU-PP-332 in relation to fatty-acid oxidation, increased energy expenditure, and metabolic syndrome markers. These findings make it a useful compound for preclinical studies focused on lipid metabolism and mitochondrial efficiency.
Skeletal Muscle & Endurance Biology
Because ERR signaling plays an important role in skeletal muscle performance, SLU-PP-332 is used to study oxidative muscle fiber composition, exercise-capacity markers, and cellular adaptations associated with aerobic conditioning.
Cardiometabolic & Aging Models
SLU-PP-332 has also been explored in models related to cardiac metabolism, mitochondrial dysfunction, inflammation, and age-associated metabolic decline. These applications remain investigational and are limited to laboratory research settings.
Specifications
- Product Name: SLU-PP-332
- Size: 5 mg vial
- Compound Class: Synthetic small-molecule ERR agonist
- Primary Research Target: ERRα/β/γ signaling
- Common Research Category: Exercise mimetic, metabolic research compound, mitochondrial research compound
- Appearance: Powder, typically white to off-white
- Form: Research-grade dry compound
- Storage: Store at −20 °C, desiccated, and protected from light
- Documentation: Certificate of Analysis available or included by lot
Research Applications
- Exercise-Mimetic Research — Aerobic exercise gene programs, endurance biology, skeletal muscle adaptation
- Mitochondrial Biology — Mitochondrial respiration, oxidative phosphorylation, ATP-related pathways
- Metabolic Research — Fatty-acid oxidation, energy expenditure, insulin-sensitivity markers, metabolic syndrome models
- Skeletal Muscle Studies — Oxidative fiber markers, fatigue resistance, muscle bioenergetics
- Cardiometabolic Models — Cardiac fatty-acid metabolism, mitochondrial function, metabolic stress signaling
- Aging & Inflammation Research — Age-related mitochondrial dysfunction, inflammatory signaling, cellular energy decline
