Molecular Composition and Characteristics Component 1: BPC-157 (synthetic pentadecapeptide) Component 2: TB-500 (thymosin beta-4 analogue) Referenced Component: CAS 89030-95-5 for analytical traceability Structure: Linear synthetic peptide chains supplied as a blended formulation Dose Format: High-concentration 30mg blended vial Stability and Storage Characteristics Supplied as a lyophilised powder for optimal stability Recommended storage temperature: 20C Sensitive to moisture, light exposure, and elevated temperatures Predictable degradation above room temperature Reconstituted solutions generally stable for 2448 hours under refrigeration Reconstitution Compatibility Bacteriostatic water Sterile saline Acid-adjusted buffer systems Selected analytical-grade organic solvents Technical Specifications product Name BPC-157 + TB-500 Blend 30mg cas 137525-51-0, 77591-33-4, 89030-95-5 purity 99% (HPLC verified) unit Size 30 mg blended vial form Lyophilised peptide blend synthesis Solid-Phase Peptide Synthesis (SPPS) analytical HPLC, Mass Spectrometry, UV Spectrophotometry molecular Structure Linear synthetic peptide chains stability High under recommended laboratory storage Quality Control and Documentation HPLC purity confirmation Mass Spectrometry molecular identity verification UV spectrophotometric concentration analysis Batch consistency and reproducibility testing Endotoxin and microbial screening Regulatory Statement BPC-157 + TB-500 Blend 30mg is supplied strictly for laboratory research and scientific investigation

Support for Immune Function Supplementing with glutathione can bolster immune responses, helping the body better defend against infections and illnesses
550-554, March 2005
Structure-binding studies of the adrenal AT4 receptor: analysis of position two- and three-modified angiotensin IV analogs
These are designed to prevent these nasty things from actually making your cells rancid, because thats fundamentally what you do, is you get rancid oil on the outside of your cells
The system Xc-allows cysteine to enter the cell in its oxidized form and reduces it again to cysteine within the cell