Research Use Only. This compound is not intended for human consumption or therapeutic use.

ProductsSLU-PP-332

Where to Buy SLU-PP-332: Vendor Comparison & Research Info

SLU-PP-332 is an experimental research compound studied for its interaction with estrogen-related receptors (ERRα, ERRβ, and ERRγ) and their role in mitochondrial function and energy metabolism. It is primarily investigated in research involving fatty-acid oxidation, oxidative metabolism, skeletal muscle physiology, and mitochondrial signaling.

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Lowest Price:$70.00

What is SLU-PP-332?

Overview

SLU-PP-332 is an experimental small molecule investigated for its interaction with estrogen-related receptors (ERRs), particularly ERRα, ERRβ, and ERRγ. These nuclear receptors play important roles in regulating mitochondrial activity, oxidative metabolism, and energy utilization.

Because of its ability to influence ERR-associated transcriptional pathways, SLU-PP-332 has become a useful research tool for studying mitochondrial function, fatty-acid metabolism, skeletal muscle physiology, and metabolic adaptation in cellular and preclinical models.

The compound is supplied as a research material for controlled laboratory investigations and should not be interpreted as an approved exercise, weight-management, or therapeutic product.

Molecular Characteristics and Chemical Profile

SLU-PP-332 belongs to a class of experimental compounds designed to modulate ERR-mediated transcription. Research has examined its ability to activate ERR signaling and influence genes associated with oxidative metabolism and mitochondrial function.

Chemical Identity: SLU-PP-332
Molecular Formula: C₂₆H₁₇F₃N₂O₃S
Molecular Weight: Approximately 494.5 g/mol
Purity: Product-specific; refer to the applicable Certificate of Analysis
Form: Powder/crystalline research compound

Research Applications

SLU-PP-332 is investigated across several areas of metabolic and cellular research, including:

  • Mitochondrial Biology: Studying mitochondrial activity, biogenesis, and oxidative capacity.

  • Energy Metabolism: Investigating cellular transitions between glycolytic and oxidative energy pathways.

  • Fatty-Acid Oxidation: Examining pathways involved in fatty-acid uptake and utilization.

  • Skeletal Muscle Research: Exploring oxidative muscle metabolism and metabolic adaptation.

  • Cardiac Metabolism: Investigating ERR signaling in myocardial energy production and metabolic stress.

  • Metabolic Disease Models: Evaluating ERR-mediated pathways in experimental models of obesity and metabolic dysfunction.

Mechanistic Context

ERRs are orphan nuclear receptors involved in regulating genes associated with energy production, mitochondrial activity, and oxidative metabolism. Their activity is closely connected with transcriptional co-regulators such as PGC-1α, which participate in metabolic adaptation to exercise and other physiological demands.

SLU-PP-332 provides researchers with a controlled method for investigating these pathways without relying exclusively on physical-exercise interventions.

Key Research Pathways

Oxidative Metabolism:
Research has examined SLU-PP-332 in relation to genes involved in mitochondrial respiration and oxidative energy production.

Fatty-Acid Utilization:
ERR activation is associated with pathways involved in fatty-acid transport and β-oxidation, providing a framework for studying cellular fuel selection.

Mitochondrial Function:
The compound is investigated for its effects on transcriptional programs associated with mitochondrial activity and energy generation.

Muscle Metabolism:
Preclinical research has explored ERR activation in skeletal muscle models, particularly in relation to oxidative capacity and metabolic adaptation.

Primary Research Areas

1. Metabolic Research

SLU-PP-332 provides a model for investigating how ERR activation affects cellular energy utilization. Researchers can examine changes in mitochondrial activity, substrate utilization, and metabolic flexibility in controlled experimental systems.

2. Skeletal Muscle and Exercise Biology

Because ERR signaling is closely associated with oxidative muscle metabolism, SLU-PP-332 has attracted interest in studies examining muscle adaptation, endurance-related pathways, and metabolic changes associated with inactivity or aging.

3. Mitochondrial Research

The compound is particularly relevant to investigations into mitochondrial biology. Researchers can examine changes in mitochondrial gene expression, oxidative metabolism, and cellular energy production following ERR pathway activation.

4. Cardiovascular Metabolism

ERRs also contribute to cardiac energy regulation. Experimental studies have therefore investigated SLU-PP-332 as a tool for examining myocardial metabolism and cellular responses to metabolic stress.

Analytical Testing and Research Quality

For research applications, analytical characterization is essential for establishing compound identity and assessing sample quality. Appropriate testing may include high-performance liquid chromatography (HPLC) and mass spectrometry (MS), depending on the supplier's analytical specifications.

Researchers should consult the batch-specific Certificate of Analysis (CoA) for verified information regarding identity, purity, and analytical results rather than relying solely on general product specifications.

Research-Use Statement

SLU-PP-332 is an experimental research compound intended for laboratory and preclinical research only. It is not approved as a medication, dietary supplement, or exercise-enhancing product and is not intended for human or veterinary consumption.

Where to Buy SLU-PP-332 Online

RankVendorTrust ScoreVial SizePrice / mgStatusAction
1
9.0/10
Editorial Rating
$70.00
0.5mg vial
$140.00/mg
In Stock
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2
N/A/10
Editorial Rating
$89.00
500mg vial
$0.18/mg
In Stock
Visit Site

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Chemical Properties & Handling

Molecular Profile
CAS NumberN/A
FormulaC₂₆H₁₇F₃N₂O₃S
Target PurityN/A
Storage Guidelines

Standard storage protocols for lyophilized peptides generally apply unless otherwise specified.

  • Lyophilized (Powder): Store at -20°C for up to 3 years. Keep away from direct light and moisture.
  • Reconstituted (Liquid): Store at 2-8°C (refrigerated) and use within 20-30 days to maintain stability.

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