The in vitro antitumour activity of novel, mitochondrial-interactive, gold-based lipophilic cations.

Sherika Mahepal, Richard Bowen, Messai Adenew Mamo, Marcus Layh, Constance Elizabeth Jansen van Rensburg
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引用次数: 10

Abstract

In this study we compared the effects of two previously described antimitochondrial gold complexes, that is, [A] [Au(dppe)(2)]Cl and [B] [Au(d4pype)(2)]Cl with two novel lipophilic cations, that is, [C] [Au(dpmaaH(2))(dpmaaSnMe(2))]Cl and [D] [Au(dpmaaSnMe(2))(2)]Cl as antimitochondrial agents. The results of this study indicate that [C] and [D] have intermediate partition coefficients and exhibited a selective uptake by cells. They exhibited a higher selectivity for the various cell lines than [A] but were more cytotoxic than [B]. There is a significant correlation between the cytotoxic potential of [A], [B], [C], and [D] and their octanol/water partition coefficients in both MCF-7 (breast cancer) and MCF-12A (nonmalignant breast) cells, whereas their cytotoxic potential and ability to induce the release of cytochrome c correlated only in the case of the MCF-12A cells. Complexes [C] and [D] are promising new chemotherapeutic drugs. These compounds target the mitochondrial membranes of certain cancer cells exploiting the differences between the mitochondrial membrane potential of these cells and normal cells. Although the concentrations of these compounds necessary to eradicate cancer cells are very high, the results provide a basis for the synthesis of a new family of compounds with intermediate partition coefficients compared to [A] and [B] but with increased activity against cancer cells.

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新型线粒体相互作用的金基亲脂性阳离子的体外抗肿瘤活性。
本研究比较了[A] [Au(dppe)(2)]Cl和[B] [Au(d4type)(2)]Cl与两种新型亲脂性阳离子[C] [Au(dpmaaH(2))(dpmaaSnMe(2))]Cl和[D] [Au(dpmaaSnMe(2))(2)]Cl作为抗线粒体剂的作用。本研究结果表明[C]和[D]具有中间分割系数,并表现出细胞的选择性摄取。它们对各种细胞系的选择性比[a]高,但对细胞的毒性比[B]高。在MCF-7(乳腺癌)和MCF-12A(非恶性乳腺)细胞中,[a]、[B]、[C]和[D]的细胞毒性电位与其辛醇/水分配系数之间存在显著相关性,而它们的细胞毒性电位与诱导细胞色素C释放的能力仅在MCF-12A细胞中相关。复合物[C]和[D]是有前景的新型化疗药物。这些化合物针对某些癌细胞的线粒体膜,利用这些细胞和正常细胞线粒体膜电位之间的差异。虽然根除癌细胞所需的这些化合物的浓度非常高,但研究结果为合成一个新的化合物家族提供了基础,该化合物家族与[a]和[B]相比具有中间的分配系数,但对癌细胞的活性增加。
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