Boc-(R)-3-Amino-3-(3-hydroxyphenyl)propionic Acid: A Key Building Block for Pharmaceutical Research and Peptide Synthesis

Discover the power of Boc-(R)-3-Amino-3-(3-hydroxyphenyl)propionic acid, a high-purity, chiral intermediate essential for advanced pharmaceutical research and sophisticated peptide synthesis. As a premier supplier, we offer this critical compound to manufacturers and researchers seeking to innovate in drug development and neuroscience.

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Advantages of Sourcing from Our Manufacturing

Exceptional Purity and Defined Chirality

Our Boc-(R)-3-Amino-3-(3-hydroxyphenyl)propionic acid is manufactured to stringent purity standards (≥97% by HPLC), ensuring reliable performance in complex synthetic pathways. This precision is vital for pharmaceutical intermediates.

Consistent Supply for Large-Scale Needs

As a dedicated manufacturer, we guarantee a stable and scalable supply of this critical amino acid derivative, supporting your production requirements from R&D to commercial scale. Inquire about bulk pricing and supplier agreements.

Expert Support and Technical Data

We provide comprehensive technical documentation and expert support to assist your research and development teams, ensuring you can effectively integrate this compound into your synthetic strategies. Secure your quote today.

Key Applications in Scientific Advancement

Pharmaceutical Drug Development

Utilized as a key building block in the synthesis of novel pharmaceutical agents, particularly for neurological disorders. Its structure aids in the development of drugs with improved efficacy.

Advanced Peptide Synthesis

An essential component in solid-phase peptide synthesis (SPPS), enabling the creation of complex peptides with enhanced stability, solubility, and bioactivity for therapeutic applications.

Neuroscience Research

A valuable tool for investigating receptor interactions and signaling pathways in neuroscience, contributing to a better understanding of brain function and potential treatments.

Chiral Building Block

Its defined stereochemistry makes it an indispensable chiral intermediate for asymmetric synthesis, crucial for producing enantiomerically pure compounds in the pharmaceutical industry.