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环戊烷并蒽醌衍生物的合成及抗肿瘤活性。

Synthesis and antitumor activity of cyclopentane-fused anthraquinone derivatives.

机构信息

Gause Institute of New Antibiotics, 11 B. Pirogovskaya Street, Moscow, 119021, Russian Federation.

Mendeleyev University of Chemical Technology, 9 Miusskaya Square, Moscow, 125047, Russian Federation.

出版信息

Eur J Med Chem. 2024 Feb 5;265:116103. doi: 10.1016/j.ejmech.2023.116103. Epub 2023 Dec 30.

Abstract

In our pursuit of developing novel analogs of anthracyclines with enhanced antitumor efficacy and safety, we have designed a synthesis scheme for 4,11-dihydroxy-5,10-dioxocyclopenta[b]anthracene-2-carboxamides. These newly synthesized compounds exhibit remarkable antiproliferative potency against various mammalian tumor cell lines, including those expressing activated mechanisms of multidrug resistance. The structure of the diamine moiety in the carboxamide side chain emerges as a critical determinant for anticancer activity and interaction with key targets such as DNA, topoisomerase 1, and ROS induction. Notably, the introduced modification to the doxorubicin structure results in significantly increased lipophilicity, cellular uptake, and preferential distribution in lysosomes. Consequently, while maintaining an impact on anthracyclines targets, these novel derivatives also demonstrate the potential to induce cytotoxicity through pathways associated with lysosomes. In summary, derivatives of cyclic diamines, particularly 3-aminopyrrolidine, can be considered a superior choice compared to aminosugars for incorporation into natural and semi-synthetic anthracyclines or new anthraquinone derivatives, aiming to circumvent efflux-mediated drug resistance.

摘要

在开发具有增强抗肿瘤疗效和安全性的新型蒽环类类似物的过程中,我们设计了 4,11-二羟基-5,10-二氧代环戊[b]蒽-2-羧酰胺的合成方案。这些新合成的化合物对各种哺乳动物肿瘤细胞系表现出显著的增殖抑制活性,包括表达多种耐药激活机制的细胞系。在羧酰胺侧链的二胺部分的结构被证明是抗癌活性和与关键靶标(如 DNA、拓扑异构酶 1 和 ROS 诱导)相互作用的关键决定因素。值得注意的是,对阿霉素结构的修饰导致亲脂性、细胞摄取和优先在溶酶体中分布显著增加。因此,这些新型衍生物在保持对蒽环类药物靶标的作用的同时,也有可能通过与溶酶体相关的途径诱导细胞毒性。总之,与氨基糖相比,环状二胺(特别是 3-氨基吡咯烷)衍生物可以被认为是一种更好的选择,可用于将天然和半合成蒽环类药物或新型蒽醌衍生物纳入其中,以规避外排介导的耐药性。

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