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新型硒甾体类化合物作为抗增殖剂。

New selenosteroids as antiproliferative agents.

作者信息

Fuentes-Aguilar Alma, Romero-Hernández Laura L, Arenas-González Ailed, Merino-Montiel Penélope, Montiel-Smith Sara, Meza-Reyes Socorro, Vega-Báez José Luis, Plata Gabriela B, Padrón José M, López Óscar, Fernández-Bolaños José G

机构信息

Facultad de Ciencias Químicas, Ciudad Universitaria, Benemérita Universidad Autónoma de Puebla, 72570 Puebla, PUE, Mexico.

出版信息

Org Biomol Chem. 2017 Jun 14;15(23):5041-5054. doi: 10.1039/c7ob00458c.

Abstract

Starting from natural steroids (diosgenin, hecogenin, smilagenin, estrone), we have prepared a wide panel of selenoderivatives, including benzoselenazolones, selenosemicarbazones, isoselenocyanates, selenoureas, selenocyanates and diselenides, with the aim of developing new families of potential chemotherapeutic agents. The modification of the organoselenium moieties, and their position on the steroid provided valuable information concerning the antiproliferative activities. Among all the families accessed herein, the best profile was achieved for selenoureas on the A ring of estrone, which exhibited GI values in the range 2.0-4.1 μM for all the tested tumor cell lines, with increased potency compared with commonly used chemotherapeutic agents, like 5-fluorouracil and cisplatin. Cell cycle analysis revealed that selenoureas induced accumulation of cells in the G phase of the cell cycle in the breast cancer cell lines HBL-100 and T-47D; therefore, a different mechanism than cisplatin, that induces cell cycle accumulation in the S phase as a result of DNA damage, must be involved. In the rest of the tumor cells, a slight increase of the S compartment was observed. Moreover, selenosteoids turned out to be excellent glutathione peroxidase (GPx) mimics for the catalytic removal of deleterious HO (t 8.0-22.5 min) and alkyl peroxides (t 23.0-38.9 min) when used in substoichiometric amounts (1% molar ratio), thus providing a valuable tool for reducing the intrinsic oxidative stress in tumor progression.

摘要

从天然甾体(薯蓣皂苷元、海柯皂苷元、菝葜皂苷元、雌酮)出发,我们制备了一系列硒衍生物,包括苯并硒唑酮、硒代氨基脲、异硒氰酸酯、硒脲、硒氰酸酯和二硒化物,旨在开发新的潜在化疗药物家族。有机硒部分的修饰及其在甾体上的位置提供了有关抗增殖活性的有价值信息。在本文所涉及的所有家族中,雌酮A环上的硒脲表现出最佳的活性谱,对所有测试的肿瘤细胞系,其GI值在2.0 - 4.1 μM范围内,与常用化疗药物如5-氟尿嘧啶和顺铂相比,效力有所提高。细胞周期分析表明,硒脲在乳腺癌细胞系HBL-100和T-47D中诱导细胞在细胞周期的G期积累;因此,必然涉及一种不同于顺铂的机制,顺铂因DNA损伤导致细胞周期在S期积累。在其余肿瘤细胞中,观察到S期部分略有增加。此外,当以亚化学计量(1%摩尔比)使用时,硒甾体被证明是极好的谷胱甘肽过氧化物酶(GPx)模拟物,用于催化去除有害的羟基自由基(t 8.0 - 22.5分钟)和烷基过氧化物(t 23.0 - 38.9分钟),从而为降低肿瘤进展中的内在氧化应激提供了一种有价值的工具。

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