SLU-PP-332 | 20mg x60
- Batch and lot coded with publicly visible lab reports to ensure quality and transparency.
- Less than 10% variance in concentration, guaranteeing consistency.
- Formulated and packaged to prevent capsule contamination in storage.
- Â UV resistance bottle to minimize degradation.
- Tamper-proof seal to ensure safety in transit.
$229.95
| Title | Range | Discount |
|---|---|---|
| Bulk/tiered discount | 1 - 3 | 0% $229.95 |
| Bulk/tiered discount | 4 - 6 | 10% $206.96 |
| Bulk/tiered discount | 7 - 10 | 15% $195.46 |
| Bulk/tiered discount | 11 - 15 | 20% $183.96 |
| Bulk/tiered discount | 16 - 25 | 22% $179.36 |
| Bulk/tiered discount | 26 - 30 | 25% $172.46 |
| Bulk/tiered discount | 31 + | 30% $160.97 |
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Chemical Information
Cas Number
303760-60-3
PubChem CID
5404083
Molecular Weight
409.4 g/mol
Molecular Formula
C18H14N2O2
Synonyms
4-hydroxy-N-[(Z)-naphthalen-2-ylmethylideneamino]benzamide
Storage (Lyophilized)
Cool, Dark, and Dry Storage.
Lab Result
Dates
Date Added:
1/4/25
Janoshik Lab Results

SLU-PP-332 – 20mg | Buy SLU-PP-332 USA & Canada
SLU-PP-332 is an emerging research compound currently being studied for its role in metabolic regulation, energy expenditure, and endurance-related pathways. It has gained attention in advanced research environments due to its potential impact on metabolic efficiency and energy utilization.
As a next-generation compound, SLU-PP-332 is often included in studies exploring mitochondrial function, fat metabolism, and endurance performance.
At StrateLabs, SLU-PP-332 20mg is supplied with high purity and strict quality standards, ensuring consistency and reliability for research applications across the USA and Canada.
Key Features & Highlights
- Emerging metabolic research compound
- Studied for energy expenditure and endurance pathways
- Associated with mitochondrial and metabolic research
- Growing interest in next-generation performance compounds
- High-quality compound for reliable research applications
Research Applications
SLU-PP-332 is frequently used in research involving metabolic pathways, endurance performance, and energy utilization. It is commonly studied for its role in regulating energy expenditure and improving metabolic efficiency in research models.
In addition, it is often included in studies exploring mitochondrial activity, fat metabolism, and endurance-related pathways. Its emerging profile makes it a valuable compound in advanced metabolic and performance research.









