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海洋生物碱法卡普利辛及其衍生物作为强效抗癌剂的构效关系研究。

Study of Structure-Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents.

作者信息

Zhidkov Maxim E, Kaune Moritz, Kantemirov Alexey V, Smirnova Polina A, Spirin Pavel V, Sidorova Maria A, Stadnik Sergey A, Shyrokova Elena Y, Kaluzhny Dmitry N, Tryapkin Oleg A, Busenbender Tobias, Hauschild Jessica, Rohlfing Tina, Prassolov Vladimir S, Bokemeyer Carsten, Graefen Markus, von Amsberg Gunhild, Dyshlovoy Sergey A

机构信息

Department of Chemistry and Materials, Institute of High Technologies and Advanced Materials, FEFU Campus, Far Eastern Federal University, Ajax Bay 10, Russky Island, 690922 Vladivostok, Russia.

Department of Oncology, Hematology and Bone Marrow Transplantation with Section Pneumology, Hubertus Wald-Tumorzentrum, University Medical Center Hamburg-Eppendorf, Martinistrasse 52, 20246 Hamburg, Germany.

出版信息

Mar Drugs. 2022 Mar 2;20(3):185. doi: 10.3390/md20030185.

Abstract

Marine alkaloid fascaplysin and its derivatives are known to exhibit promising anticancer properties in vitro and in vivo. However, toxicity of these molecules to non-cancer cells was identified as a main limitation for their clinical use. Here, for the very first time, we synthesized a library of fascaplysin derivatives covering all possible substituent introduction sites, i.e., cycles A, C and E of the 12-pyrido[1-2-:3,4-']diindole system. Their selectivity towards human prostate cancer versus non-cancer cells, as well as the effects on cellular metabolism, membrane integrity, cell cycle progression, apoptosis induction and their ability to intercalate into DNA were investigated. A pronounced selectivity for cancer cells was observed for the family of di- and trisubstituted halogen derivatives (modification of cycles A and E), while a modification of cycle C resulted in a stronger activity in therapy-resistant PC-3 cells. Among others, 3,10-dibromofascaplysin exhibited the highest selectivity, presumably due to the cytostatic effects executed via the targeting of cellular metabolism. Moreover, an introduction of radical substituents at C-9, C-10 or C-10 plus C-3 resulted in a notable reduction in DNA intercalating activity and improved selectivity. Taken together, our research contributes to understanding the structure-activity relationships of fascaplysin alkaloids and defines further directions of the structural optimization.

摘要

海洋生物碱法卡普利辛及其衍生物在体外和体内均表现出有前景的抗癌特性。然而,这些分子对非癌细胞的毒性被认为是其临床应用的主要限制。在此,我们首次合成了一个法卡普利辛衍生物库,涵盖了所有可能的取代基引入位点,即12-吡啶并[1-2-:3,4-']二吲哚系统的A、C和E环。研究了它们对人前列腺癌细胞与非癌细胞的选择性,以及对细胞代谢、膜完整性、细胞周期进程、凋亡诱导的影响及其插入DNA的能力。对于二取代和三取代卤素衍生物家族(A环和E环修饰),观察到对癌细胞有明显的选择性,而C环修饰在耐治疗的PC-3细胞中导致更强的活性。其中,3,10-二溴法卡普利辛表现出最高的选择性,可能是由于通过靶向细胞代谢产生的细胞生长抑制作用。此外,在C-9、C-10或C-10加C-3处引入自由基取代基导致DNA插入活性显著降低并提高了选择性。总之,我们的研究有助于理解法卡普利辛生物碱的构效关系,并确定结构优化的进一步方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4ad/8949187/b4d6e97f1bca/marinedrugs-20-00185-g001.jpg

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