Organic Chemistry Chair I and Interdisciplinary Center for Molecular Materials (ICMM), Friedrich Alexander University Erlangen-Nürnberg, Erlangen, Germany.
CSIR-Indian Institute of Chemical Technology, Hyderabad, India.
Med Res Rev. 2021 Nov;41(6):2927-2970. doi: 10.1002/med.21814. Epub 2021 Jun 11.
Considerable progress has been made with the rather recently developed dimer approach, which has already found applications in the development of new effective artemisinin-derived antimalarial, anticancer, and antiviral agents. One observation common to these potential applications is the significant (i.e., much more than double) improvement in activity of artemisinin based dimers, which are not toxic to normal cells and have fewer or less harmful side effects, with respect to monomers against parasites, cancer cells and viruses. Due to the high potential of the dimerization concept, many new artemisinin-derived dimer compounds and their biological activities have been recently reported. In this review an overview of the synthesis of dimer drug candidates based on the clinically used drug artemisinin and its semisynthetic derivatives is given. Besides the highlighting of biological activities of the selected dimers, the main focus is set on different synthetic approaches toward the dimers containing a broad variety of symmetric and nonsymmetric linking moieties.
在最近发展起来的二聚体方法方面已经取得了相当大的进展,该方法已经在开发新的有效青蒿素衍生的抗疟、抗癌和抗病毒药物方面得到了应用。这些潜在应用的一个共同观察结果是,基于青蒿素的二聚体的活性显著提高(即,比单体对寄生虫、癌细胞和病毒的活性提高两倍多),这些二聚体对正常细胞没有毒性,并且具有更少或更少的有害副作用。由于二聚化概念的高潜力,最近已经报道了许多新的青蒿素衍生的二聚体化合物及其生物活性。在这篇综述中,概述了基于临床使用的药物青蒿素及其半合成衍生物的二聚体候选药物的合成。除了突出所选二聚体的生物活性外,重点还放在各种对称和非对称连接部分的二聚体的不同合成方法上。