(R)-(+)-2-Chloropropionic acid can be used as a starting material in the synthesis of:
Thiolactic acid, a key intermediate, which is used for the preparation of 2(R),5(S)-oxathiolanones by reacting with pivalaldehyde.[1]
(R)-2-chloropropionyl chloride, a key intermediate, which is utilized in the synthesis of (R)-4,5-dihydro-5-methylpyridazin-3(2H)-one derivative with pyrazolopyridine ring as a potential phosphodiesterase inhibitor.[2]
2-Chloropropionamide derivatives as protein disulfide isomerase (PID) inhibitors.[3]
ACS chemical biology, 12(8), 2124-2131 (2017-06-15)
Resurgent interest in covalent target engagement in drug discovery has demonstrated that small molecules containing weakly reactive electrophiles can be safe and effective therapies. Several recently FDA-approved drugs feature an acrylamide functionality to selectively engage cysteine side chains of kinases
[formula: see text] A new and efficient asymmetric synthesis of naturally occurring (5R)-thiolactomycin (1) using D-alanine as the source of chirality is described.
A short and efficient synthesis of a chiral pyridazinone derivative by the chiral-pool method
Frontiers in microbiology, 12, 725997-725997 (2021-10-09)
L-2-halocid dehalogenases (L-2-HADs) have been mainly characterized from terrestrial polluted environments. By contrast, knowledge is still scarce about their role in detoxification of predominant halocarbons in marine environments. Here, phylogenetic analyses showed a wide diversity of homologous L-2-HADs, especially among
Questions
Reviews
★★★★★ No rating value
Active Filters
Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.