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碳硼烷衍生物的新型潜在抗癌剂:二茂铁取代的二硫代邻碳硼烷共轭物的选择性细胞相互作用及活性

New potential anticancer agent of carborane derivatives: selective cellular interaction and activity of ferrocene-substituted dithio-o-carborane conjugates.

作者信息

Wu Chunhui, Ye Hongde, Bai Wenjuan, Li Qingning, Guo Dadong, Lv Gang, Yan Hong, Wang Xuemei

机构信息

State Key Lab of Bioelectronics (Chien-Shiung Wu Lab), Southeast University, Jiangsu 210096, China.

出版信息

Bioconjug Chem. 2011 Jan 19;22(1):16-25. doi: 10.1021/bc100158b. Epub 2010 Dec 16.

Abstract

The large diversity of structures and unique bonding modes of organometallic complexes make them possible to act as promising candidate therapeutic agents. In this study, the new type of ferrocene-substituted dithio-o-carborane conjugates (FcSB1, FcSB2, and FcSBCO) has been synthesized, and their in vitro antineoplastic activities have been explored by means of the electrochemical study, the real time cell electronic sensing (RT-CES) system, and biological assays. The conjugate-cell interactions were first monitored by electrochemistry, and the results show different cell uptake efficiency for FcSB1, FcSB2, and FcSBCO toward target cells. Both the highly hydrophobic ferrocenyl and carboranyl groups render the conjugates able to rapidly enter cells and exert acute cytotoxicity after 4 h incubation in serum-free media. However, FcSB1, FcSB2, and FcSBCO display different inhibition efficiencies toward SMMC-7721 and HepG2 cancer cells via the G(0)/G(1) arrest mechanism in a physiological environment. The anticancer activity is in the order FcSB2 > FcSB1 > FcSBCO, which is parallel to the order of the redox potentials of the ferrocenyl groups in the three complexes. In particular, FcSB1 and FcSB2 display a potent selective inhibition effect on the proliferation of the cancer cell lines SMMC-7721 and HepG2, but almost no effect on the normal cell line, the human embryonic lung fibroblast (HELF) cells. Thus, these results may provide some clues for use of the ferrocene-carborane conjugates in developing anticancer drugs.

摘要

有机金属配合物结构的巨大多样性和独特的键合模式使其有可能成为有前景的候选治疗药物。在本研究中,合成了新型的二硫代邻碳硼烷取代的二茂铁共轭物(FcSB1、FcSB2和FcSBCO),并通过电化学研究、实时细胞电子传感(RT-CES)系统和生物学测定来探索它们的体外抗肿瘤活性。首先通过电化学监测共轭物与细胞的相互作用,结果表明FcSB1、FcSB2和FcSBCO对靶细胞具有不同的细胞摄取效率。高度疏水的二茂铁基和碳硼烷基均使共轭物能够快速进入细胞,并在无血清培养基中孵育4小时后发挥急性细胞毒性。然而,在生理环境中,FcSB1、FcSB2和FcSBCO通过G(0)/G(1)期阻滞机制对SMMC-7721和HepG2癌细胞显示出不同的抑制效率。抗癌活性顺序为FcSB2 > FcSB1 > FcSBCO,这与三种配合物中二茂铁基团的氧化还原电位顺序一致。特别地,FcSB1和FcSB2对癌细胞系SMMC-7721和HepG2的增殖显示出有效的选择性抑制作用,但对正常细胞系人胚肺成纤维细胞(HELF)几乎没有影响。因此,这些结果可能为二茂铁-碳硼烷共轭物在开发抗癌药物中的应用提供一些线索。

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