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设计、合成及生物研究内酯、内酰胺和碳环大环、环氧、氮丙啶和 1,1-二氟环丙烷及其他氟残基的埃坡霉素 B 类似物。

Design, Synthesis, and Biological Investigation of Epothilone B Analogues Featuring Lactone, Lactam, and Carbocyclic Macrocycles, Epoxide, Aziridine, and 1,1-Difluorocyclopropane and Other Fluorine Residues.

机构信息

Department of Chemistry, BioScience Research Collaborative, Rice University, 6100 Main Street, Houston, Texas 77005, United States.

AbbVie, Inc., 400 East Jamie Court, South San Francisco, California 94080, United States.

出版信息

J Org Chem. 2020 Mar 6;85(5):2865-2917. doi: 10.1021/acs.joc.0c00123. Epub 2020 Feb 17.

Abstract

Despite previous studies within the epothilone field, only one member of this compound family, ixabepilone, made it to approval for clinical use. Recent advances in organic synthesis and medicinal chemistry allow further optimization of lead epothilone analogues aiming to improve their potencies and other pharmacological properties as part of the quest for discovery and development of new anticancer drugs, including antibody-drug conjugates as potential targeted cancer therapies. Herein, we report the design, synthesis, and biological evaluation of a series of new epothilone B analogues equipped with novel structural motifs, including fluorine-containing residues, 12,13-difluorocyclopropyl moieties, mono- and dimethylated macrolactones, and 1-keto macrocyclic systems, as well as two N-substituted ixabepilone analogues in which the 12,13-epoxide and macrolactam NH moieties were replaced, the former with a substituted aziridine moiety and the latter with an NCO-alkyl residue (imide or carbamate). Biological evaluation of these analogues revealed a number of exceptionally potent epothilone B analogues, demonstrating the potency enhancing effects of the fluorine residues and the aziridinyl moiety within the structure of the epothilone molecule and providing new and useful structure-activity relationships within this class of compounds.

摘要

尽管先前在埃坡霉素领域进行了研究,但该化合物家族中只有一个成员伊沙匹隆被批准用于临床使用。最近有机合成和药物化学的进展允许进一步优化先导埃坡霉素类似物,旨在提高它们的效力和其他药理学性质,作为发现和开发新的抗癌药物的一部分,包括抗体药物偶联物作为潜在的靶向癌症治疗方法。在此,我们报告了一系列新型埃坡霉素 B 类似物的设计、合成和生物学评价,这些类似物具有新型结构基序,包括含氟残基、12,13-二氟环丙基部分、单甲基和二甲基大环内酯以及 1-酮大环系统,以及两个 N-取代的伊沙匹隆类似物,其中 12,13-环氧和大环内酰胺 NH 部分被取代,前者用取代的氮丙啶部分取代,后者用 NCO-烷基部分(酰亚胺或氨基甲酸酯)取代。对这些类似物的生物学评价揭示了一些非常有效的埃坡霉素 B 类似物,证明了氟残基和氮丙啶部分在埃坡霉素分子结构中的增强效力的作用,并提供了此类化合物中新颖和有用的构效关系。

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