SLUPP-332 Pen

SLUPP-332 Pen

20mg
Dhs. 1,300.00
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SLUPP-332 Pen

SLUPP-332 Pen

Dhs. 1,300.00
DOSAGE

SLU-PP-332 is a novel research peptide studied for its role in metabolic activation, energy expenditure, and mitochondrial efficiency. Supplied in a sterile peptide pen format, this compound has attracted interest in metabolic and performance research due to its interaction with estrogen-related receptor (ERR) pathways, which regulate fat oxidation, endurance signalling, and cellular energy production.

Unlike stimulant-based metabolic agents, SLU-PP-332 is investigated for cell-level metabolic optimisation, making it relevant to research into weight management, metabolic flexibility, and exercise-mimetic pathways.


Key Features

💉 Sterile peptide pen for precise research delivery
🔥 Investigated for metabolic activation and fat oxidation pathways
⚙️ Targets mitochondrial and endurance signalling
🧪 Research-grade peptide formulation
📄 Supplied for laboratory research use only


Key Research Benefits

🔥 Enhances Energy Expenditure
• Studied for increasing cellular metabolic output

⚙️ Supports Mitochondrial Function
• Activates pathways linked to mitochondrial biogenesis and oxidative metabolism

🏃 Endurance & Exercise-Mimetic Signalling
• Explored in research models investigating endurance and stamina adaptations

⚖️ Fat Oxidation & Metabolic Flexibility
• Supports research into improved fatty-acid utilisation

🚫 Non-Stimulant Pathway
• Does not rely on CNS stimulation or appetite suppression mechanisms


Mechanism Overview

SLU-PP-332 is studied as an ERR (Estrogen-Related Receptor) agonist, influencing genetic pathways involved in:

  • Fatty acid oxidation

  • Aerobic metabolism

  • Mitochondrial efficiency

  • Energy homeostasis

This positions SLU-PP-332 as a compelling compound for metabolic and endurance-focused peptide research.


Human-Relevant Research Applications

🔬 Metabolic rate and energy expenditure studies
🔬 Fat oxidation and body composition research
🔬 Endurance and exercise-mimetic signalling
🔬 Mitochondrial health and cellular metabolism

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