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首页> 外文期刊>Chemical Reviews >Design, Synthesis, and Biological Activity of Unnatural Enediynes and Related Analogues Equipped with pH-Dependent or Phototriggering Devices
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Design, Synthesis, and Biological Activity of Unnatural Enediynes and Related Analogues Equipped with pH-Dependent or Phototriggering Devices

机译:具有pH依赖性或光触发装置的非天然对映体及其相关类似物的设计,合成和生物活性

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摘要

Oxidative DNA cleavage by the diradical species generated from enediyne or enyne-cumulene progenitor is believed to be at the heart of the biological activity of the naturally occurring enediyne antibiotics. These serve as a perfect example of a prodrug designed by Nature. The promotion of certain members of this class of natural products to the actual clinical stage against certain types of tumors has generated an unprecedented flurry of research activities in the field of chemistry, biology, and medicine in search of new therapeutic agents. Various factors, such as ring strain, the proximity of carbon atoms undergoing covalent connectivity, etc., play important roles in controlling the process of diradical generation via cycloaromatization, and the lead from Mother Nature continues to be followed, as evidenced from the report of numerous synthetic mimics of the natural products. A major focus of research in this field involves the synthesis of designed enediynes to correlate their chemical and biological activity coupled with a novel triggering mechanism. Triggering of enediynes is necessary to activate them to generate the reactive form under appropriate conditions. Variations of pH and photo-irradiation are two important methods for triggering enediynes that are stable under ambient conditions. In this review, the synthesis and reactivity of endiynes and analogous molecules equipped with such triggering devices is discussed along with the analysis of the current level of biological activity achieved thus far.
机译:烯二炔或烯炔-异丙苯前体产生的双自由基物种对DNA的氧化裂解被认为是天然烯二炔抗生素生物活性的核心。这些是自然界设计的前药的完美典范。将这类天然产物的某些成员推广到针对某些类型肿瘤的实际临床阶段,已经在化学,生物学和医学领域进行了前所未有的研究活动,以寻找新的治疗剂。诸如环应变,碳原子经历共价连接的邻近性等各种因素在通过环芳构化控制双自由基生成过程中起着重要作用,并且从大自然母亲那里得到的线索仍在继续,从天然产物的许多合成模拟物。该领域的研究重点涉及设计的烯二炔的合成,以使其化学和生物活性与新颖的触发机制相关联。在适当的条件下触发烯二炔以激活它们以产生反应形式是必要的。 pH值和光辐射的变化是触发烯二炔的两种重要方法,该烯二炔在环境条件下稳定。在这篇综述中,讨论了配备有这种触发装置的endiynes和类似分子的合成和反应性,以及对迄今为止达到的当前生物活性水平的分析。

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