Study on Organocatalytic Asymmetric Michael Addition in Aqueous Media by a Hydrogen-Bonding Catalyst and Application for Inhibitors of GABAB Receptor

Shim, Jae Ho and Hong, Yeonsun and Kim, Ji Hae and Kim, Hyeon Soo and Ha, Deok-Chan (2021) Study on Organocatalytic Asymmetric Michael Addition in Aqueous Media by a Hydrogen-Bonding Catalyst and Application for Inhibitors of GABAB Receptor. In: Challenges and Advances in Chemical Science Vol. 7. B P International, pp. 43-58. ISBN 978-93-5547-330-1

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Abstract

Catalysts based on (R, R)-1,2-diphenylethylenediamine are as chiral organic catalysts, applied to the asymmetric Michael addition to , -unsaturated nitroalkenes under neutral conditions. The role of an aqueous medium for organic catalytic activity can be reversed concerning hydrophilic-hydrophobic function depending on the reaction conditions. In this study, to provide an environmentally friendly system, the thiourea-based catalyst substituted with 3,5-(CF3)2-Ph was used in water solvents. The hydrophobic effect of the substituent, provides fast reaction, high chemical yield, and mirror-image selectivity. This reaction allowed the preparation of GABAB agonists in an optically pure manner. Besides, GABA ( -aminobutyric acid) analogs such as baclofen and phenibut were synthesized as R-type S-type with high optical purity. We demonstrated that R-baclofen induced a higher intracellular Ca2+ release than RS-baclofen. Taken together, our data show that as a drug, baclofen RS-type may induce differential calcium release activity depending on R and S-types. This will in turn induce differential GABAB receptor activation.

Item Type: Book Section
Subjects: Euro Archives > Chemical Science
Depositing User: Managing Editor
Date Deposited: 16 Oct 2023 03:24
Last Modified: 16 Oct 2023 03:24
URI: http://publish7promo.com/id/eprint/3450

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