Kishimoto Shuichi, Yasuda Megumi, Suzuki Ryosuke, Fukushima Shoji
Department of Pharmaceutics, Faculty of Pharmaceutical Sciences, Kobe Gakuin University, Minatojima 1-1-3, Chuo-ku, Kobe, 650-8586, Japan.
Department of Pharmacy, Shool of Pharmacy, Hyogo University of Helth Sciences, Minatojima 1-3-6, Chuo-ku, Kobe, 650-8530, Japan.
Biometals. 2016 Dec;29(6):1075-1083. doi: 10.1007/s10534-016-9978-5. Epub 2016 Oct 27.
A cationic azolato-bridged dinuclear platinum(II) complex, [{cis-Pt(NH)}(μ-OH)(μ-methyl-pyrazolate)] (4M-PzPt), was developed to overcome resistance to cisplatin (CDDP). This study aimed to assess the cytotoxicity of 4M-PzPt against a CDDP-resistant cell line, H4-II-E/CDDP, and compare the intracellular accumulation of CDDP and 4M-PzPt. H4-II-E and H4-II-E/CDDP displayed similar sensitivity to 4M-PzPt; however, the sensitivity of H4-II-E/CDDP to CDDP was approximately 19-fold lower than that of H4-II-E. The difference in the sensitivity to both platinum complexes corresponded with the difference in the amount of intracellular platinum accumulation after exposure to CDDP or 4M-PzPt in both cell lines. In H4-II-E, HepG2, and HuH-7 cells, the intracellular uptake of CDDP and 4M-PzPt occurred via active transport and passive transport. Results of co-exposure with the transport inhibitors ouabain, tetraethylammonium, and cimetidine indicated that the intracellular uptake of CDDP was dependent on Na/K-ATPase and that of 4M-PzPt was dependent on organic cation transporters (OCTs), probably OCT1. This study suggested that 4M-PzPt could inhibit the growth of a CDDP-resistant tumor via an intracellular uptake mechanism different from that of CDDP.
一种阳离子唑桥联双核铂(II)配合物[{顺式-Pt(NH)}(μ-OH)(μ-甲基吡唑盐)](4M-PzPt)被开发用于克服对顺铂(CDDP)的耐药性。本研究旨在评估4M-PzPt对CDDP耐药细胞系H4-II-E/CDDP的细胞毒性,并比较CDDP和4M-PzPt在细胞内的积累情况。H4-II-E和H4-II-E/CDDP对4M-PzPt表现出相似的敏感性;然而,H4-II-E/CDDP对CDDP的敏感性比H4-II-E低约19倍。两种细胞系对这两种铂配合物敏感性的差异与暴露于CDDP或4M-PzPt后细胞内铂积累量的差异相对应。在H4-II-E、HepG2和HuH-7细胞中,CDDP和4M-PzPt的细胞内摄取通过主动转运和被动转运发生。与转运抑制剂哇巴因、四乙铵和西咪替丁共同暴露的结果表明,CDDP的细胞内摄取依赖于Na/K-ATP酶,而4M-PzPt的细胞内摄取依赖于有机阳离子转运体(OCTs),可能是OCT1。本研究表明,4M-PzPt可以通过与CDDP不同的细胞内摄取机制抑制CDDP耐药肿瘤的生长。