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Catalytic Approaches to Optically Active 1,5-Benzothiazepines

机译:光学活性1,5-苯并噻嗪类催化方法

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摘要

The 1,5-benzothiazepine framework is wellknown as a versatile pharmacophore, and its derivatives have numerous biological activities. Therefore, various synthetic routes to these important compounds have already been investigated. However, in light of the increase in optically active pharmaceuticals, it is of significance to also develop enantioselective synthetic methods. Among various strategies, methods based on enantioselective catalysis are generally efficient in both academia and industry with respect to different factors such as atom or step economy, economic reasons, and diversity-oriented synthesis. While various methodologies had already been investigated until the 1990s, soon after the discovery of marketed pharmaceuticals such as diltiazem, a blockbuster drug containing a 1,5-benzothiazepine unit, additional catalytic strategies also appeared. Thus, this Perspective provides an account of the progress on enantioselective catalysis for the asymmetric synthesis of 1,5-benzothiazepine derivatives.
机译:1,5-苯并噻嗪骨架框架被称为多功能药物,其衍生物具有许多生物活性。因此,已经研究了这些重要化合物的各种合成途径。然而,鉴于光学活性药物的增加,还具有显着的映选择性合成方法具有重要意义。在各种策略中,基于对映选择性催化的方法在学术界和工业中,在学术界和行业方面的效率通常是有效的,例如原子或迈出的经济,经济原因和定期的合成等不同因素。虽然已经调查了各种方法,但在20世纪90年代,在发现含有1,5-苯并噻嗪单位的大片药物如Diltiazem等市场药物之后,也出现了另外的催化策略。因此,这种透视提供了对1,5-苯并噻嗪类衍生物的不对称合成对映选择性催化的进展的叙述。

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