Kyotorphin (L-Tyrosyl-L-Arginine)
- CAS No.70904-56-2
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity Kyotorphin (CAS 70904-56-2) for biochemical research. Premium L-tyrosyl-L-arginine dipeptide supplied by a global manufacturer with full COA.
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Product Overview
Kyotorphin, systematically identified as L-tyrosyl-L-arginine, is a distinguished bioactive dipeptide that holds a prominent position in modern neurochemical research and pharmaceutical development. First isolated from bovine brain tissue in the late twentieth century, this molecule has become a cornerstone for scientists investigating endogenous pain regulation systems. As a specialized manufacturer with decades of experience in peptide synthesis, we deliver premium-grade Kyotorphin designed to meet the rigorous demands of academic laboratories and industrial R and D departments. Our commitment to quality ensures that every batch provides consistent performance for complex biochemical assays.
Chemical Specifications
| Parameter | Value |
|---|---|
| CAS Number | 70904-56-2 |
| Molecular Formula | C15H23N5O4 |
| Molecular Weight | 337.37 g/mol |
| Appearance | White Crystalline Powder |
| Purity (Assay) | ≥98.0% |
| Density | 1.43 g/cm3 |
| Storage Conditions | Cool, Ventilated, Dry Place |
Research Applications and Mechanisms
This dipeptide is primarily utilized in neuroscience research to investigate intricate pain modulation mechanisms within the central nervous system. Unlike traditional opioid analgesics, Kyotorphin operates through distinct biochemical pathways, potentially involving the release and stabilization of Met-enkephalin without direct binding to opioid receptors. This unique mechanism makes it an invaluable tool for studying neuromodulator functions and exploring non-opioid therapeutic avenues. Researchers utilize this compound to develop novel strategies for neurological conditions where conventional treatments may have limitations. Our high-purity material supports diverse experimental setups, including receptor binding assays, enzymatic stability studies, and preclinical pharmacological models.
Quality Assurance and Handling
We understand that purity and structural integrity are critical in peptide research. Each production batch undergoes rigorous multi-step testing using high-performance liquid chromatography (HPLC) and nuclear magnetic resonance (NMR) spectroscopy to verify chemical identity and purity levels. We provide comprehensive Certificates of Analysis (COA) with every shipment to ensure full transparency. To maintain optimal stability, the product should be stored in a cool, ventilated environment away from direct moisture, strong light, and extreme temperatures. Proper handling procedures should be followed to prevent degradation of the peptide bond during laboratory operations.
Packaging and Global Supply
We offer flexible packaging solutions to accommodate various research scales and logistical needs. Our standard packaging is 5 kg per drum, ensuring robust protection during transit. However, we can customize packaging according to specific customer requirements, including smaller aliquots for pilot studies or larger bulk containers for industrial-scale production. Our global supply chain network ensures timely delivery while maintaining strict cold chain or ambient stability protocols as required. We are dedicated to supporting our partners with reliable supply chains and premium quality chemical intermediates. Our commitment to excellence ensures that your research proceeds without interruption due to material variability. Contact our technical team for detailed formulation guidance and bulk pricing inquiries.
Key Advantages
- High purity grades suitable for sensitive biochemical applications
- Strict compliance with international chemical safety and quality standards
- Scalable production capacity for bulk research and development needs
- Comprehensive technical support available for formulation guidance
- Competitive pricing structures for long-term strategic partnerships
- Fast turnaround times for custom synthesis requests
