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  2. Lipase mediated new chemo-enzymatic synthesis of (RS)-, (R)-, and (S)-bunolol

Lipase mediated new chemo-enzymatic synthesis of (RS)-, (R)-, and (S)-bunolol

  • Chirality. 2024 Jan;36(1):e23627. doi: 10.1002/chir.23627.
Ravinder Reddy Patlolla 1 2 Pulivarthi Deepthi 3 Gajjala Raveena 1 2 Khawlhring Rosangzuala 1 2 Somarowthu Tejaswini 1 Reddy Shetty Prakasham 1 Linga Banoth 1 2
Affiliations

Affiliations

  • 1 Organic Synthesis and Process Chemistry Division, CSIR-Indian Institute of Chemical Technology, Hyderabad, India.
  • 2 Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.
  • 3 Fluoro Agrochemicals, CSIR-Indian Institute of Chemical Technology, Hyderabad, India.
Abstract

The β-adrenergic receptor blocking agents are an important class of drug molecules. The present study reports a new chemo and chemo-enzymatic synthetic process for (RS)-, (R)-, and (S)-bunolol, one of the potent β-adrenergic receptor blocker. In chemo-enzymatic process, CAL L4777 Lipase was employed for enantioselective kinetic resolution to synthesize the enantiopure (R)-alcohol and (S)-ester from the corresponding racemic alcohol. Thereafter, the corresponding (R)-alcohol and deacylated (S)-ester were treated with tert-butylamine to produce (S)- and (R)-bunolol, respectively. In chemical approach, epichlorohydrin (RS-, R-, and S-) was used as a starting material via respective (RS)-, (S)-, and (R)-glycidyl ether as intermediates for synthesis of enantiomeric (RS)-, (R)-, and (S)-bunolol. In comparison between two approaches, it was found that the chemo-enzymatic process was more effective and resulted in enantiomeric excess of 98% with 35% yield.

Keywords

biocatalysis; chemo-enzymatic synthesis; levobunolol; lipase.

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