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Product Information

Product Name
L-3,5-Dibromotyrosine
Brand Name
Chem Impex
Product Number
02856
CAS
300-38-9
Certificate of Analysis (COA)​
COA not found

General Information

PubChem CID
67532
IUPAC Name
(2S)-2-amino-3-(3,5-dibromo-4-hydroxyphenyl)propanoic acid
InChI Key
COESHZUDRKCEPA-ZETCQYMHSA-N
SMILES
C1=C(C=C(C(=C1Br)O)Br)CC@@H(C(=O)O)N

Application

L-3,5-Dibromotyrosine is widely utilized in research focused on:

Pharmaceutical Development: This compound is explored for its potential in developing new drugs, particularly in targeting specific receptors in the brain, which can lead to advancements in treating neurological disorders.

Biochemical Research: It serves as a valuable tool in studying protein interactions and enzyme activities, helping researchers understand complex biological processes.

Antioxidant Studies: L-3,5-Dibromotyrosine is investigated for its antioxidant properties, which can be beneficial in formulating supplements aimed at reducing oxidative stress in cells.

Environmental Science: The compound is used in studies assessing the effects of brominated compounds on ecosystems, providing insights into their environmental impact and degradation pathways.

Material Science: It is explored in the development of novel materials with specific properties, such as enhanced thermal stability, which can be advantageous in various industrial applications.

References Data Source From Pubchem

Multi-omics dataset of bovine mammary epithelial cells stimulated by ten different essential amino acids

Publication Name: Scientific Data
Publication Date: 2024-03-12
DOI: 10.1038/s41597-024-03123-4

Elesclomol, a copper-transporting therapeutic agent targeting mitochondria: from discovery to its novel applications

Publication Name: Journal of Translational Medicine
Publication Date: 2023-10-20
DOI: 10.1186/s12967-023-04533-5

TTD: Therapeutic Target Database describing target druggability information

Publication Name: Nucleic Acids Research
Publication Date: 2023-09-15
DOI: 10.1093/nar/gkad751

Biogeographic patterns of biosynthetic potential and specialized metabolites in marine sediments

Publication Name: The ISME Journal
Publication Date: 2023-04-15
DOI: 10.1038/s41396-023-01410-3

Lactobacillus plantarum Ameliorates High-Carbohydrate Diet-Induced Hepatic Lipid Accumulation and Oxidative Stress by Upregulating Uridine Synthesis

Publication Name: Antioxidants (Basel, Switzerland)
Publication Date: 2022-06-24
DOI: 10.3390/antiox11071238