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Catalog Number:
26450
CAS Number:
93790-49-9
Boc-cystamine hydrochloride
Purity:
≥ 99% (HPLC)
Documents
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2 Citations
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$60.00 /250MG
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Product Information

Boc-cystamine.HCl is a versatile compound widely utilized in the fields of biochemistry and medicinal chemistry. This hydrochloride salt of Boc-cystamine serves as a valuable building block for the synthesis of various bioactive molecules, particularly in the development of peptide-based therapeutics. Its unique structure, featuring a tert-butyl carbamate protecting group, allows for selective reactions, making it an essential reagent in the preparation of cysteine derivatives and disulfide-containing compounds. Researchers appreciate its stability and ease of handling, which facilitate its use in complex organic syntheses.

In addition to its role in synthetic chemistry, Boc-cystamine.HCl has shown potential in drug delivery systems and as a reducing agent in biochemical applications. Its ability to form disulfide bonds can be harnessed in the design of novel biomaterials and therapeutic agents. With its favorable properties and broad applicability, Boc-cystamine.HCl stands out as a crucial component for researchers aiming to innovate in drug design and development.

CAS Number
93790-49-9
Purity
≥ 99% (HPLC)
Molecular Formula
C9H20N2O2S2·HCl
Molecular Weight
288.86
MDL Number
MFCD13184913
PubChem ID
74889717
Melting Point
115 - 125 °C
Appearance
White crystalline powder
Conditions
Store at 0 - 8 °C
General Information
CAS Number
93790-49-9
Purity
≥ 99% (HPLC)
Molecular Formula
C9H20N2O2S2·HCl
Molecular Weight
288.86
MDL Number
MFCD13184913
PubChem ID
74889717
Melting Point
115 - 125 °C
Appearance
White crystalline powder
Conditions
Store at 0 - 8 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Boc-cystamine.HCl is widely utilized in research focused on:

  • Drug Development: This compound serves as a valuable intermediate in synthesizing pharmaceuticals, particularly those targeting cysteine-related pathways, enhancing the development of new therapeutic agents.
  • Bioconjugation: It is used in bioconjugation processes, allowing researchers to attach biomolecules to drugs or imaging agents, improving specificity and efficacy in targeted therapies.
  • Antioxidant Research: The compound is studied for its potential antioxidant properties, making it relevant in developing treatments for oxidative stress-related conditions.
  • Protein Engineering: Boc-cystamine.HCl is employed in modifying proteins, aiding in the design of novel biomaterials with improved stability and functionality for various applications.
  • Diagnostics: Its role in creating sensitive detection methods for biomolecules positions it as a critical component in diagnostic tool development, enhancing disease detection accuracy.