Gen SLU-PP-332 – 5mg

$90.00

  • 5mg SLU-PP-332
  • Supporting endurance
  • Energy efficiency
  • Fat-oxidation potential
(11 customer reviews)
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Gen SLU-PP-332 - 5mg
Gen SLU-PP-332 - 5mg
$90.00
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Important: No product should be used without the explicit direction of a licensed physician.
Not All Peptides Are Made The Same. Suppliers may take shortcuts with dilution, solvents, or handling. Body and Science follows documented lab processes and provides research-grade materials with clear batch documentation for every product.
Avg. Purity
98.81%
Avg. Mass
4.95mg
Result Date
January 21, 2026
Date Added
28/01/2026
Gen SLU-PP-332 - 5mg


Gen SLU-PP-332 is a small-molecule research compound frequently chosen by research teams exploring energy expenditure signaling, endurance related pathways, and metabolic balance frameworks in controlled models.


Overview

SLU-PP-332 is widely studied in research focused on mitochondrial activity signaling, metabolic coordination, and cellular energy regulation. In non-clinical models, research teams use this compound to examine how nuclear receptor pathways may influence lipid oxidation markers, glucose utilization readouts, and endurance related cellular signals. This makes it a flexible option for projects centered on metabolic research themes and performance related pathway analysis.


Mechanism and Research Focus

SLU-PP-332 targets estrogen-related receptor pathways associated with mitochondrial biogenesis communication, oxidative metabolism signaling, and cellular energy adaptation networks. Studies in structured and preclinical models have shown that modulation of these pathways can influence mitochondrial density indicators, lipid utilization markers, and energy expenditure signals under standardized conditions. This allows research teams to track shifts in important markers linked to metabolic efficiency research, endurance pathway analysis, and cellular energy investigations.


Key Research Observations

Research has shown SLU-PP-332 may help support the following in non-clinical models:

Energy expenditure signaling: Elevated caloric utilization markers recorded in controlled laboratory frameworks.

Endurance pathway support: Increased mitochondrial activity indicators observed in structured preclinical systems.

Lipid metabolism markers: Favourable shifts in fat oxidation readouts documented in standardized model analyses.

Cellular energy balance: Improved metabolic efficiency signals measured in non-clinical pathway research.


Benefits Seen in Various Research Settings

  • Energy utilization pathways explored through controlled mitochondrial signaling models.
  • Endurance and performance markers tracked in structured oxidative metabolism studies.
  • Lipid oxidation signals analyzed in standardized body composition experiments.
  • Cellular energy adaptation pathways investigated in preclinical receptor activation frameworks.
  • Metabolic efficiency markers examined in laboratory endurance related research.

Form and Handling

  • 98% research grade purity
  • Crystalline powder
  • Store at -20°C and protect from light and moisture

Research Use Only

For laboratory research use only. Not for human or animal consumption, medical use, or any form of therapy.