Buy GW-501516 (Cardarine) Powder for Metabolic & Endurance Research – Peptide Online Store
What is GW-501516 (Cardarine)?
GW-501516, also known as Cardarine, is a peroxisome proliferator-activated receptor delta (PPAR-δ) agonist originally developed for metabolic and cardiovascular research.
Unlike typical anabolic SARMs, GW-501516 functions by activating PPAR-δ pathways, influencing lipid metabolism, fatty acid oxidation, and glucose utilization.
It is commonly used in laboratory studies exploring:
Energy expenditure and endurance enhancement
Lipid profile regulation
Fat oxidation and metabolic adaptation
How GW-501516 Works in Research
GW-501516 activates PPAR-δ receptors, leading to enhanced expression of genes involved in fatty acid metabolism.
This results in:
Increased oxidation of fatty acids in skeletal muscle
Improved glucose homeostasis
Reduced lipid accumulation in tissues
In rodent models, Cardarine has been shown to enhance endurance capacity and mimic the effects of physical exercise, making it a valuable research tool for metabolic physiology.
Key Research Benefits of GW-501516
✅ Supports studies on energy metabolism and mitochondrial activity
✅ Useful for endurance performance research
✅ Enhances understanding of lipid and glucose regulation
✅ High-purity standard ensures consistent assay reproducibility
✅ Backed by COA and HPLC/GC-MS verification
Product Details and Specifications
| Property | Specification |
|---|---|
| Product Name | GW-501516 (Cardarine) Powder |
| Chemical Formula | C₂₁H₁₈F₃NO₃S₂ |
| Molecular Weight | 453.50 g/mol |
| Form | Fine crystalline powder |
| Purity | ≥ 99% (HPLC Verified) |
| Appearance | White to off-white solid |
| Storage | Store in a cool, dry place (2–8 °C) |
| Intended Use | For research and laboratory applications only |
Laboratory Applications
Metabolic regulation studies
Fat oxidation and energy utilization assays
Endurance physiology and exercise mimetic research
PPAR-δ receptor binding and transcriptional activation assays
These studies help uncover pathways relevant to obesity, diabetes, and cardiovascular health research.
Handling & Safety Information
Handle with gloves, mask, and protective eyewear
Avoid inhalation or skin contact
Dispose of unused material per laboratory safety protocols
Analytical Testing & Quality Assurance
All GW-501516 batches undergo:
HPLC purity testing (≥ 99%)
GC-MS identity confirmation
NMR structural validation
Heavy metal and solvent residue analysis
A Certificate of Analysis (COA) accompanies each shipment, ensuring traceability and reliability for research institutions.
Why Choose Peptide Online Store?
Guaranteed ≥ 99% purity verified by third-party labs
Fast, discreet, and trackable worldwide shipping
COA and MSDS documentation provided
Secure payment and compliance-ready packaging
Trusted supplier for research peptides, SARMs, and analogues
Shipping & Delivery
Orders processed within 24–48 hours
Vacuum-sealed packaging to maintain stability
Discreet labeling for confidential shipment
Global delivery available with tracking support
How to Order GW-501516 Powder
Visit PeptideOnlineStore.com
Search for GW-501516 (Cardarine) Powder
Add to cart and complete secure checkout
Receive confirmation and tracking within 48 hours
Frequently Asked Questions
Q1: Is GW-501516 the same as Cardarine?
A1: Yes, GW-501516 is the chemical name for Cardarine, a PPAR-δ agonist used in metabolic research.
Q2: Can GW-501516 be used by humans?
A2: No. This compound is intended strictly for laboratory research and not approved for human consumption.
Q3: What purity can I expect?
A3: Each batch is ≥ 99% pure, verified via HPLC and GC-MS analyses.
Related Research Compounds
SR-9009 (Stenabolic) Powder
MK-677 (Ibutamoren) Capsules
S-23 Powder
YK-11 Powder
RAD-140 (Testolone) Powder
Final Overview
GW-501516 (Cardarine) Powder is a high-purity research compound ideal for metabolic, endurance, and PPAR-δ pathway investigations.
With verified quality and discreet worldwide shipping, Peptide Online Store ensures reliable supply for advanced laboratory and institutional research.
