Biological Activity and Research Applications of 2-Phenylethyl Bromide
NINGBO INNO PHARMCHEM CO.,LTD. is shedding light on the emerging biological activities of 2-Phenylethyl Bromide (CAS 103-63-9), a compound that is increasingly recognized for its significance beyond traditional chemical synthesis applications. Recent research highlights its potential in biological studies, particularly its anticholinesterase activity, which positions it as a subject of interest for neurological research.
Studies have indicated that 2-Phenylethyl Bromide exhibits inhibitory effects on acetylcholinesterase (AChE), an enzyme critical for neurotransmission. This anticholinesterase activity suggests potential therapeutic avenues for conditions affecting cognitive function, such as Alzheimer's disease. Molecular docking studies further support this by demonstrating a favorable binding affinity of the compound to the active site of AChE, providing a molecular basis for its observed effects. The compound's potential neuroprotective properties are also being explored, adding another layer to its biological relevance.
Beyond its direct biological effects, 2-Phenylethyl Bromide serves as a valuable tool in scientific research. Its predictable reactivity and well-understood chemical properties make it a useful reagent in various laboratory investigations. For researchers interested in exploring the biological impact of chemical compounds or utilizing them as research tools, NINGBO INNO PHARMCHEM CO.,LTD. provides access to high-quality 2-Phenylethyl Bromide. Understanding the biological activity of 2-phenylethyl bromide opens doors to innovative research in neuroscience and pharmacology.
Perspectives & Insights
Molecule Vision 7
“This anticholinesterase activity suggests potential therapeutic avenues for conditions affecting cognitive function, such as Alzheimer's disease.”
Alpha Origin 24
“Molecular docking studies further support this by demonstrating a favorable binding affinity of the compound to the active site of AChE, providing a molecular basis for its observed effects.”
Future Analyst X
“The compound's potential neuroprotective properties are also being explored, adding another layer to its biological relevance.”