Department of Pharmaceutical Sciences, Guru Nanak Dev University, Amritsar 143005, Punjab, India.
School of Pharmaceutical Sciences, MVN University, Palwal 121105, Haryana, India.
Bioorg Med Chem. 2019 Aug 15;27(16):3477-3510. doi: 10.1016/j.bmc.2019.06.033. Epub 2019 Jun 22.
Hybrid molecules, furnished by combining two or more pharmacophores is an emerging concept in the field of medicinal chemistry and drug discovery that has attracted substantial traction in the past few years. Naturally occurring scaffolds such as coumarins display a wide spectrum of pharmacological activities including anticancer, antibiotic, antidiabetic and others, by acting on multiple targets. In this view, various coumarin-based hybrids possessing diverse medicinal attributes were synthesized in the last five years by conjugating coumarin moiety with other therapeutic pharmacophores. The current review summarizes the recent development (2014 and onwards) of these pharmacologically active coumarin hybrids and demonstrates rationale behind their design, structure-activity relationships (SAR) and mechanistic studies performed on these hybrid molecules. This review will be beneficial for medicinal chemist and chemical biologist, and in general to the drug discovery community and will facilitate the synthesis and development of novel, potent coumarin hybrid molecules serving as lead molecules for the treatment of complex disorders.
杂合分子是将两个或多个药效团组合而成的一种新兴概念,在过去几年中,它在药物化学和药物发现领域引起了广泛关注。天然存在的骨架,如香豆素,通过作用于多个靶点,显示出广泛的药理活性,包括抗癌、抗生素、抗糖尿病等。有鉴于此,在过去五年中,通过将香豆素部分与其他治疗性药效团连接,合成了具有多种药用属性的各种香豆素杂合分子。本综述总结了这些具有药理活性的香豆素杂合分子的最新发展(2014 年及以后),并展示了其设计背后的原理、构效关系(SAR)以及对这些杂合分子进行的机制研究。这篇综述将对药物化学家、化学生物学家以及药物发现领域的一般人员有益,并将促进新型、有效的香豆素杂合分子的合成和开发,作为治疗复杂疾病的先导分子。