Cystamine

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Cystamine[edit | edit source]

Chemical structure of Cystamine

Cystamine is a chemical compound that belongs to the class of organic disulfides. It is commonly used in various fields, including medicine, biochemistry, and materials science. Cystamine has gained significant attention due to its diverse applications and potential therapeutic benefits.

Chemical Properties[edit | edit source]

Cystamine has a molecular formula of C4H12N2S2 and a molecular weight of 156.29 g/mol. It is a white crystalline solid that is soluble in water and alcohol. The compound is highly reactive due to the presence of two thiol groups, which can undergo oxidation and reduction reactions.

Medical Applications[edit | edit source]

Cystamine has shown promising results in various medical applications. It has been extensively studied for its potential neuroprotective effects in neurodegenerative diseases such as Huntington's disease and Parkinson's disease. Cystamine acts as an antioxidant and has been found to inhibit the aggregation of misfolded proteins, which are characteristic of these diseases.

Furthermore, cystamine has been investigated for its potential role in the treatment of cystinosis, a rare genetic disorder characterized by the accumulation of cystine crystals in various organs. Cystamine has been shown to reduce cystine levels in cells and improve the symptoms associated with cystinosis.

Biochemical Role[edit | edit source]

In biochemistry, cystamine is often used as a cross-linking agent to study protein structure and function. It can form disulfide bonds with cysteine residues in proteins, leading to the formation of protein aggregates. This property of cystamine has been utilized to investigate protein-protein interactions and protein folding pathways.

Materials Science[edit | edit source]

Cystamine has also found applications in materials science. It can be used as a precursor for the synthesis of various polymers and coatings. Cystamine-based polymers have been developed for drug delivery systems, tissue engineering scaffolds, and surface modification of materials.

Safety Considerations[edit | edit source]

While cystamine has shown potential therapeutic benefits, it is important to consider safety precautions when handling this compound. Cystamine can be toxic if ingested, inhaled, or absorbed through the skin. Proper protective measures, such as wearing gloves and a lab coat, should be taken when working with cystamine.

References[edit | edit source]


See Also[edit | edit source]

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Contributors: Prab R. Tumpati, MD