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SLU-PP-332 5mg

$76.00 $64.60

22 in stock

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SLU-PP-332 5 mg is a research-grade small-molecule pan-ERR agonist studied for exercise-mimetic signaling, mitochondrial bioenergetics, fatty-acid oxidation, skeletal muscle metabolism, and metabolic pathway research. For laboratory research use only. Not for human consumption.

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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

Additional information

Weight .1 lbs

At AminoVault, our commitment is to scientific integrity and unmatched product quality. We provide research-exclusive peptides and specialty compounds formulated with the highest-purity ingredients, sourced from GMP-certified facilities. Every batch undergoes rigorous third-party testing to ensure precision, consistency, and compliance. No exaggerated claims—just elite-grade materials trusted by researchers who demand the best.

At AminoVault, safety begins with strict adherence to quality standards. All of our compounds are produced in GMP-certified facilities and undergo comprehensive third-party testing to verify identity, purity, and consistency. While our products are not intended for human consumption, they meet the highest benchmarks for laboratory and research use. We are committed to full transparency and provide detailed documentation, including Certificates of Analysis (COAs), with every batch.

Every batch of AminoVault peptides is subject to a multi-point quality control process, including High-Performance Liquid Chromatography (HPLC) and Mass Spectrometry (MS) testing. This ensures batch-to-batch consistency, accurate amino acid sequencing, and the absence of contaminants or solvents. Results are documented in detailed COAs, available for customer review.

While many suppliers claim “high purity,” AminoVault proves it—with verified ≥99% purity on every peptide (unless specified), third-party certification, and direct traceability to GMP-certified manufacturing partners. We never cut corners with fillers or low-cost synthesis shortcuts. Our peptides are trusted by leading academic and biotech labs for their reliability and reproducibility.

Yes. While we refuse to compromise on quality, our streamlined supply chain and bulk manufacturing efficiencies allow us to offer exceptional pricing without sacrificing performance. Our goal is to make world-class peptides accessible for every level of researcher—from university labs to independent investigators.

Absolutely not. AminoVault peptides are lyophilized to pure powder form, free of fillers, dyes, preservatives, or binding agents. What you see is what you get: pure, unadulterated compounds designed for clean research outcomes.

At AminoVault, we prioritize fast and secure delivery. Most in-stock items are processed and shipped within 1–3 business days. All orders are carefully packaged with temperature-control insulation to maintain compound stability during transit, ensuring your peptides arrive research-ready and uncompromised.

Yes. Our scientific support team is available to assist with technical product inquiries, documentation, and ordering guidance. Whether you’re a seasoned researcher or new to peptide science, we’re here to ensure your project starts on solid ground.

Every AminoVault order includes active links to a Certificate of Analysis (COA) that provides a comprehensive breakdown of the current product’s purity level, molecular identity, and batch traceability. Each COA is linked to our lab testing verification URL, where customers can independently access and confirm test results using a unique batch number. This ensures full transparency and confidence in the authenticity and quality of every peptide we supply.

AminoVault isn’t just a vendor—we’re a trusted partner in scientific progress. Our peptides are backed by GMP-certified manufacturing, third-party lab testing, transparent documentation, and an unwavering commitment to purity, performance, and professionalism. With fast shipping, responsive support, and competitive pricing, we deliver not only elite research compounds but also the confidence and consistency your work demands. When precision matters, AminoVault is the name researchers trust.

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