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O-杂环的现状:合成与药用概述。

The Current Status of O-Heterocycles: A Synthetic and Medicinal Overview.

机构信息

Molecular Modelling Lab (MML), Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala, Punjab, 147002, India.

出版信息

ChemMedChem. 2018 Jun 6;13(11):1071-1087. doi: 10.1002/cmdc.201800119. Epub 2018 Apr 25.

Abstract

O-Heterocycles have been explored in the field of medicinal chemistry for a long time, but their significance has not been duly recognised and they are often shunned in favour of N-heterocycles. The design of bioactive molecules for nearly every pathophysiological condition is primarily focused on novel N-heterocycles. The main reasons for such bias include the ease of synthesis and possible mimicking of physiological molecules by N-heterocycles. But considering only this criterion rarely provides breakthrough molecules for a given disease condition, and instead the risks of toxicity or side effects are increased with such molecules. On the other hand, owing to improved synthetic feasibility, O-heterocycles have established themselves as equally potent lead molecules for a wide range of pathophysiological conditions. In the last decade there have been hundreds of reports validating the fact that equally potent molecules can be designed and developed by using O-heterocycles, and these are also expected to have comparably low toxicity. Even so, researchers tend to remain biased toward the use of N-heterocycles over O-heterocycles. Thus, this review provides a critical analysis of the synthesis and medicinal attributes of O-heterocycles, such as pyrones, oxazolones, furanones, oxetanes, oxazolidinones, and dioxolonones, and others, reported in the last five years, underlining the need for and the advantages guiding researchers toward them.

摘要

O-杂环化合物在药物化学领域已经被研究了很长时间,但它们的重要性尚未得到充分认可,并且经常被回避,而倾向于使用 N-杂环化合物。几乎每一种病理生理状况的生物活性分子的设计都主要集中在新型 N-杂环化合物上。这种偏见的主要原因包括 N-杂环化合物的合成容易和可能模拟生理分子。但是,仅考虑这个标准很少为给定的疾病状况提供突破性的分子,而是会增加这些分子的毒性或副作用的风险。另一方面,由于合成可行性的提高,O-杂环化合物已经确立了自己作为广泛的病理生理状况的同样有效先导分子。在过去的十年中,有数百份报告证实了这样一个事实,即可以通过使用 O-杂环化合物设计和开发同样有效的分子,而且这些分子也有望具有相当低的毒性。即便如此,研究人员仍然倾向于对 N-杂环化合物的使用保持偏见,而不是 O-杂环化合物。因此,本综述对过去五年中报道的吡喃酮、噁唑酮、呋喃酮、环氧乙烷、恶唑烷酮和二氧杂环酮等 O-杂环化合物的合成和药物属性进行了批判性分析,强调了需要和指导研究人员使用它们的优势。

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