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非定域、亲脂性、阳离子没食子酸衍生物对癌细胞系的抗增殖和解偶联作用。在同基因小鼠体内的验证。

Antiproliferative and uncoupling effects of delocalized, lipophilic, cationic gallic acid derivatives on cancer cell lines. Validation in vivo in singenic mice.

机构信息

Clinical and Molecular Pharmacology Program, Institute of Biomedical Sciences (ICBM), Faculty of Medicine, University of Chile , Independencia 1027, Santiago 8380453, Chile.

出版信息

J Med Chem. 2014 Mar 27;57(6):2440-54. doi: 10.1021/jm500174v. Epub 2014 Mar 17.

Abstract

Tumor cells principally exhibit increased mitochondrial transmembrane potential (ΔΨ(m)) and altered metabolic pathways. The therapeutic targeting and delivery of anticancer drugs to the mitochondria might improve treatment efficacy. Gallic acid exhibits a variety of biological activities, and its ester derivatives can induce mitochondrial dysfunction. Four alkyl gallate triphenylphosphonium lipophilic cations were synthesized, each differing in the size of the linker chain at the cationic moiety. These derivatives were selectively cytotoxic toward tumor cells. The better compound (TPP(+)C10) contained 10 carbon atoms within the linker chain and exhibited an IC50 value of approximately 0.4-1.6 μM for tumor cells and a selectivity index of approximately 17-fold for tumor compared with normal cells. Consequently, its antiproliferative effect was also assessed in vivo. The oxygen consumption rate and NAD(P)H oxidation levels increased in the tumor cell lines (uncoupling effect), resulting in a ΔΨ(m) decrease and a consequent decrease in intracellular ATP levels. Moreover, TPP(+)C10 significantly inhibited the growth of TA3/Ha tumors in mice. According to these results, the antineoplastic activity and safety of TPP(+)C10 warrant further comprehensive evaluation.

摘要

肿瘤细胞主要表现出线粒体跨膜电位(ΔΨ(m))增加和代谢途径改变。将抗癌药物靶向递送至线粒体可能会提高治疗效果。没食子酸具有多种生物学活性,其酯衍生物可诱导线粒体功能障碍。合成了四种烷基没食子酸三苯基膦亲脂性阳离子,每个阳离子部分的连接链大小都不同。这些衍生物对肿瘤细胞具有选择性细胞毒性。更好的化合物(TPP(+)C10)在连接链中含有 10 个碳原子,对肿瘤细胞的 IC50 值约为 0.4-1.6 μM,与正常细胞相比,选择性指数约为 17 倍。因此,还在体内评估了其抗增殖作用。肿瘤细胞系中的耗氧量和 NAD(P)H 氧化水平增加(解偶联作用),导致ΔΨ(m)降低,进而导致细胞内 ATP 水平降低。此外,TPP(+)C10 显著抑制了小鼠 TA3/Ha 肿瘤的生长。根据这些结果,TPP(+)C10 的抗肿瘤活性和安全性值得进一步全面评估。

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