
SLU PP-332
Novel ERRα/γ agonist for metabolic and exercise mimetic research applications
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If an independent HPLC assay of your lot comes back below the purity stated on our published Certificate of Analysis, we reship your order free. Verifiable, not a promise.
99.22% Purity Verified
HPLC / ESI-MS Tested
FOR RESEARCH PURPOSES ONLY. This product is strictly for laboratory and research use. Not for human consumption, medical treatment, or any clinical application. By ordering, you confirm you are a qualified researcher or represent a legitimate research institution.
SLU PP-332: Key Facts
SLU PP-332 is a fat loss research peptide supplied by LyzeLabs as a lyophilized reference standard, strictly for laboratory research use. It is available in 1 format starting at $340 per kit. Each batch is independently HPLC-verified at 99.22% purity by Janoshik Analytical, with the certificate of analysis published on the lab-results page and matched to the lot number printed on the vial.
| Compound | SLU PP-332 |
|---|---|
| Research category | Fat Loss |
| Available formats | 5mg*10vials |
| Starting price | From $340 USD per kit |
| Purity | 99.22% verified (third-party HPLC, Janoshik) |
| Test method | HPLC / ESI-MS |
| Certificate of analysis | Published online, matched to the vial lot number |
| Intended use | Laboratory research use only. Not for human consumption. |
| Handling | Supplied lyophilized, store per the stability guide |
Dr. Rahul Gupta
UAE
"Excellent ERR agonist for our exercise mimetic research. High purity and consistent results."
2025-11-14
Prof. David Thompson
United States
"Premium quality SLU PP-332 for our metabolic studies. Reliable and well-documented."
2025-11-11
Dr. Lars Petersen
Denmark
"High-quality compound for our mitochondrial research. Excellent shipping to Europe."
2025-11-07
About This Product
SLU PP-332 Research Guide
An ERR Pan-Agonist Exercise Mimetic
SLU PP-332 is a research compound developed at Saint Louis University as a pan-agonist of the Estrogen-Related Receptor (ERR) family (ERR alpha, beta, and gamma). Despite the name, ERRs are orphan nuclear receptors that do not bind estrogen, and their endogenous ligands remain largely uncharacterized. What they do is regulate the transcription of genes involved in mitochondrial biogenesis, oxidative metabolism, and muscle fiber-type composition, making them central players in the molecular signature of exercise adaptation.
SLU PP-332 is studied as an exercise mimetic because activating the ERR pathway produces transcriptional changes that parallel some of the adaptations seen in exercise training protocols, without requiring the physical exercise itself. This makes it a valuable research tool for protocols investigating the molecular mechanisms of endurance adaptation.
Mechanism
- ERR pan-agonism: activates ERR alpha, beta, and gamma across the three-member ERR family
- Mitochondrial biogenesis signaling: ERR activation drives PGC-1 alpha coactivator recruitment and downstream mitochondrial biogenesis programs
- Oxidative metabolism shift: promotes fatty acid oxidation and aerobic metabolism gene expression
- Fiber-type composition effects: research models show shifts toward more oxidative muscle fiber types with chronic ERR activation
Research Applications
- Exercise mimetic research investigating the molecular signature of endurance adaptation without the confounds of exercise physiology
- Mitochondrial biogenesis research involving the ERR/PGC-1 alpha axis
- Muscle fiber-type composition studies
- Metabolic research where substrate oxidation preferences are the study variable
- Comparative research against other exercise mimetic approaches
Quality Standards
- Purity: 99 percent plus verified by independent third-party HPLC (Janoshik Analytical)
- Form: lyophilized powder in sterile vials
- Storage: refrigerator for near-term use, minus 20 degrees Celsius long-term
- Documentation: batch-matched Certificate of Analysis published at /lab-results
For research purposes only. Not for human consumption or therapeutic use.
Research Context for SLU PP-332
Lipolysis and Fat Metabolism Research Context
Fat metabolism research peptides target lipolysis, mitochondrial fatty acid oxidation, brown adipose activation, or direct effects on adipocyte viability. Research protocols measure body composition, lipid panel markers, and tissue-specific fat mobilization under defined experimental conditions.
SLU PP-332 ships as a lyophilized research reagent through the LyzeLabs™ catalog in the Fat Loss category, available as a single research-grade format. Every batch is independently verified by Janoshik Analytical, with the full HPLC chromatogram and mass spectrometry confirmation published on the LyzeLabs lab results page and matched to the lot number printed on your vial.
Related Research Guides
Other Compounds in the Fat Loss Category
Frequently Asked Questions
SLU PP-332
$340