H-PRO-TYR-OH (CAS 19786-36-8): Your Premier Dipeptide Supplier for Advanced Research

Discover the critical role of H-PRO-TYR-OH in pharmaceutical research and development. As a leading manufacturer and supplier in China, NINGBO INNO PHARMCHEM CO.,LTD. provides high-purity dipeptides essential for understanding complex biological processes and advancing drug discovery.

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Advantages of Partnering with NINGBO INNO PHARMCHEM CO.,LTD.

Uncompromised Purity and Quality

Our H-PRO-TYR-OH meets stringent purity requirements (≥97%), ensuring accurate and reproducible results in your laboratory. We are a dedicated supplier committed to delivering excellence in every batch.

Expertise in Peptide Synthesis Intermediates

Leverage our deep understanding of amino acid derivatives and peptide synthesis. As a specialist manufacturer, we offer insights and support for your R&D endeavors involving compounds like N-L-Prolyl-L-tyrosine.

Reliable Supply Chain and Competitive Pricing

Benefit from a stable supply of H-PRO-TYR-OH from our China-based facility. We offer competitive H-PRO-TYR-OH price points and flexible order quantities to meet your procurement needs.

Key Applications of H-PRO-TYR-OH

Biochemical Pathway Research

H-PRO-TYR-OH is instrumental in understanding the intricate biochemical mechanisms involving tyrosine. Researchers can buy this compound to explore its role in various metabolic pathways and enzymatic activities.

Cell Signaling Modulation

Investigate the effects of tyrosine hydroxylation and phosphorylation. Our H-PRO-TYR-OH product is vital for studies examining tyrosine kinases and phosphatases, critical components of cell signaling.

Protein-Protein Interaction Studies

As a dipeptide derivative, H-PRO-TYR-OH aids in understanding how tyrosine residues influence protein function and interactions. This makes it an indispensable tool for molecular biologists.

Pharmaceutical Drug Discovery

Utilize H-PRO-TYR-OH as a building block or research tool in the development of new therapeutics. Its unique structure offers potential in creating novel compounds for various medical applications.