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SLU-PP-332 (5 mg)

Original price was: $179.00.Current price is: $139.00.

Form – Lyophilized powder

Freeze-dried powder form for stable storage and easy reconstitution.

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Additional information

Weight 0.03 kg

Dimensions 2 × 2 × 5 cm

Description

SLU-PP-332 (5 mg) — Product Overview

SLU-PP-332 is a synthetic research compound characterised as a potent pan-agonist of estrogen-related receptors (ERRs). It is primarily used in laboratory and preclinical studies to explore how activation of ERR pathways affects cellular energy metabolism, mitochondrial function and gene programmes associated with physical exercise.

Product Details

  • Name: SLU-PP-332
  • Amount: 5 mg per vial
  • Form: Solid research compound intended for dissolution in appropriate solvents
  • Intended Use: For research purposes only (not approved for therapeutic use)
  • Regulatory Status: Not evaluated or approved by health authorities for human or veterinary use

Research Context

SLU-PP-332 has been studied in cellular and animal models as a tool compound to investigate how enhanced estrogen-related receptor (ERR) signalling affects metabolic pathways. ERRs, particularly ERRα, are nuclear receptors involved in regulating genes that influence:

  • Mitochondrial biogenesis and efficiency
  • Fatty acid oxidation and energy expenditure
  • Oxidative metabolism and muscle endurance programmes
  • Transcriptional pathways linked to aerobic training responses

In preclinical research, SLU-PP-332 has demonstrated effects such as increased energy expenditure, enhanced fatty-acid metabolism, and activation of exercise-associated transcriptional programmes in skeletal muscle — outcomes typically observed in endurance training models.

Mechanistic Summary

SLU-PP-332 is understood to:

  • Bind and activate ERR family receptors (ERRα, ERRβ, ERRγ), with strongest affinity at ERRα
  • Enhance interaction with transcriptional co-activators involved in metabolic regulation
  • Promote gene expression linked to cellular energy utilisation and oxidative metabolism
  • These pathways are a component of metabolic regulation research, not clinical treatments.

Key Features

✔ Designed for experimental research and mechanistic study
✔ Useful in studies of mitochondrial function and energy metabolism
✔ Enables exploration of exercise-related genetic pathways in controlled laboratory settings
✔ Supplied with Certificate of Analysis for identity and purity assessment

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