| Literature DB >> 26821612 |
Saptarshi Ghosh1, Jayeeta Bhaumik1, Linga Banoth1, Sooram Banesh1, Uttam Chand Banerjee1.
Abstract
A biocatalytic route for the synthesis of a potential β-blocker, (S)-moprolol is reported here. Enantiopure synthesis of moprolol is mainly dependent on the chiral intermediate, 3-(2-methoxyphenoxy)-propane-1,2-diol. Various commercial lipases were screened for the enantioselective resolution of (RS)-3-(2-methoxyphenoxy)propane-1,2-diol to produce the desired enantiomer. Among them, Aspergillus niger lipase (ANL) was selected on the basis of both stereo- and regioselectivity. The optimized values of various reaction parameters were determined such as enzyme (15 mg/mL), substrate concentration (10 mM), organic solvent (toluene), reaction temperature (30 °C), and time (18 h).The optimized conditions led to achieving >49% yield with high enantiomeric excess of (S)-3-(2-methoxyphenoxy)propane-1,2-diol. The lipase-mediated catalysis showed regioselective acylation with dual stereoselectivity. Further, the enantiopure intermediate was used for the synthesis of (S)-moprolol, which afforded the desired β-blocker.Entities:
Keywords: enantiopure; lipase; moprolol; stereoselectivity; β-blocker
Mesh:
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Year: 2016 PMID: 26821612 DOI: 10.1002/chir.22574
Source DB: PubMed Journal: Chirality ISSN: 0899-0042 Impact factor: 2.437