Research work presented here describes an approach to achieve
the enantiopure escitalopram (1) via didesmethyl escitalopram
(4), which is easily resolvable compared to citalopram (1a)
through diastereomeric salt crystallization. The resolved intermediate (didesmethylcitalopram) was subsequently used for the
preparation of the desired drug. This simple modification of
the substrate makes a remarkable difference in the chemical
resolution process. The first resolution of didesmethylcitalopram
(±)-4 to furnish (+)-4, a novel key intermediate to assemble
escitalopram (1) was achieved via diastereomeric salt resolution
using (−)-di-p-toluoyltartaric acid (DPTTA). The resolution
conditions were optimized; a key feature of this process is the
addition of specific quantity of water at a specific temperature
to the reaction mixture.
Application of a boric acid catalyzed process for the synthesis of the carboxamides, key reaction intermediates in the preparation of various active pharmaceutical ingredients (APIs), has been explored.
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