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管状菌素的改进全合成及新型管状菌素的设计、合成与生物评价,其对癌细胞具有高抗肿瘤活性,有望作为抗体药物偶联物的有效载荷。

Improved Total Synthesis of Tubulysins and Design, Synthesis, and Biological Evaluation of New Tubulysins with Highly Potent Cytotoxicities against Cancer Cells as Potential Payloads for Antibody-Drug Conjugates.

机构信息

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

Laboratory of Chemical Biology of Natural Products & Designed Molecules , N.C.S.R "Demokritos" , 153 10 Agia Paraskevi , Athens , Greece.

出版信息

J Am Chem Soc. 2018 Mar 14;140(10):3690-3711. doi: 10.1021/jacs.7b12692. Epub 2018 Jan 30.

Abstract

Improved, streamlined total syntheses of natural tubulysins such as V (Tb45) and U (Tb46) and pretubulysin D (PTb-D43), and their application to the synthesis of designed tubulysin analogues (Tb44, PTb-D42, PTb-D47-PTb-D49, and Tb50-Tb120), are described. Cytotoxicity evaluation of the synthesized compounds against certain cancer cell lines revealed a number of novel analogues with exceptional potencies [e.g., Tb111: IC = 40 pM against MES SA (uterine sarcoma) cell line; IC = 6 pM against HEK 293T (human embryonic kidney cancer) cell line; and IC = 1.54 nM against MES SA DX (MES SA with marked multidrug resistance) cell line]. These studies led to a set of valuable structure-activity relationships that provide guidance to further molecular design, synthesis, and biological evaluation studies. The extremely potent cytotoxic compounds discovered in these investigations are highly desirable as potential payloads for antibody-drug conjugates and other drug delivery systems for personalized targeted cancer chemotherapies.

摘要

描述了天然 Tubulysin 类似物(如 V(Tb45)和 U(Tb46)和 Pretubulysin D(PTb-D43))的改进、简化全合成,以及它们在设计的 Tubulysin 类似物(Tb44、PTb-D42、PTb-D47-PTb-D49 和 Tb50-Tb120)合成中的应用。对合成化合物对某些癌细胞系的细胞毒性评估揭示了许多具有异常效力的新型类似物[例如,Tb111:对 MES SA(子宫肉瘤)细胞系的 IC = 40 pM;对 HEK 293T(人胚肾癌细胞系)的 IC = 6 pM;对 MES SA DX(具有显著多药耐药性的 MES SA)细胞系的 IC = 1.54 nM]。这些研究得出了一系列有价值的构效关系,为进一步的分子设计、合成和生物评价研究提供了指导。在这些研究中发现的极其有效的细胞毒性化合物非常适合作为抗体药物偶联物和其他药物输送系统的潜在有效载荷,用于个性化靶向癌症化疗。

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