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过渡金属促进的 Staudinger 反应合成β-内酰胺:从过渡金属增强的有机催化到原位高反应性中间体合成和催化串联反应的替代合成方法。

Synthesis of β-lactams by transition metal promoted Staudinger reactions: alternative synthetic approaches from transition metal enhanced organocatalysis to in situ, highly reactive intermediate synthesis and catalytic tandem reactions.

机构信息

Department of Chemistry, Texas A&M University at Qatar, P.O. Box 23874, Doha, Qatar.

出版信息

Org Biomol Chem. 2013 Sep 28;11(36):5976-88. doi: 10.1039/c3ob41048j.

Abstract

The development of new types of β-lactam antibiotics is a relevant field of contemporary pharmaceutical research. Although many types of antibiotics are available on the market and widely used, β-lactam antibiotics are considered to be one of the best choice as they are highly effective while having reasonable safety profiles. The wide application however has led to the appearance of resistant bacteria suppressing their efficacy. In the last decade fewer and fewer new antibiotics have been launched into the market, however more and more multiresistant germs have appeared posing significant threats especially to patients who are suffering from chronic diseases and have weakened immune systems. The development of new, highly efficient antibiotics is now direly needed. One of the options to accelerate β-lactam antibiotic research is the development of alternative robust, convenient, versatile and cheap synthetic procedures in which the β-lactam molecules can be easily synthesized with the desired diastereoselectivity. The most general way to introduce diastereoselectivity in the chemical reactions is the application of chiral catalyst systems. While there are several systems for the synthesis of β-lactams the transition metal assisted Staudinger reaction--[2 + 2] cycloaddition between a ketene and an imine--remained the most simple and most versatile methodology. The motivation behind this brief review is to draw the chemical community's attention to the relevance and applicability of transition metal promoted Staudinger reactions in β-lactam based antibiotic development. This article summarizes the most relevant pioneer works completed on this field in order to open new ideas for the forthcoming organometallic systems based bioactive material development.

摘要

新型β-内酰胺类抗生素的开发是当代药物研究的一个相关领域。尽管市场上有许多类型的抗生素广泛应用,但β-内酰胺类抗生素因其高效且安全性合理而被认为是最佳选择之一。然而,广泛的应用导致了耐药菌的出现,从而抑制了它们的疗效。在过去的十年中,新推出的抗生素越来越少,而越来越多的多耐药菌出现,对患有慢性疾病和免疫系统较弱的患者构成了重大威胁。现在急需开发新的、高效的抗生素。加速β-内酰胺类抗生素研究的一种选择是开发替代的稳健、方便、通用和廉价的合成方法,在这些方法中,可以很容易地以所需的非对映选择性合成β-内酰胺分子。在化学反应中引入非对映选择性的最常见方法是使用手性催化剂体系。虽然有几种用于合成β-内酰胺的体系,但过渡金属辅助的 Staudinger 反应——酮烯和亚胺之间的[2+2]环加成反应——仍然是最简单和最通用的方法。撰写这篇综述的动机是引起化学界对手性过渡金属促进的 Staudinger 反应在基于β-内酰胺类抗生素开发中的相关性和适用性的关注。本文总结了该领域最相关的先驱工作,以期为即将到来的基于有机金属的生物活性物质开发提供新的思路。

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