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探索六配位锗(IV)-二酮配合物作为抗癌剂。

Exploring six-coordinate germanium(IV)-diketonate complexes as anticancer agents.

作者信息

Mertens Randall T, Parkin Sean, Awuah Samuel G

机构信息

Department of Chemistry, College of Arts and Sciences, University of Kentucky, 505 Rose Street, Lexington, KY 40506-0055, USA.

出版信息

Inorganica Chim Acta. 2020 Apr;503(1). doi: 10.1016/j.ica.2019.119375. Epub 2019 Dec 19.

Abstract

Cancer remains one of the leading causes of death worldwide and despite several attempts using chemotherapy to combat the deadly disease, toxic side effects and drug resistance temper efficacy [1]. Thus, drugs with potentially new mechanisms and lower toxicity to normal cells are needed. Metalloids such as arsenic compounds have been clinically beneficial in fighting cancer, but germanium is yet to gain such prominence [2,3]. We report the synthesis of four octahedral germanium(IV) complexes bearing acetylacetonato ligand, [Ge(acac))], with different anions (3 - 6) using a streamlined synthetic approach. The compounds were structurally and electrochemically characterized using NMR, MS, X-ray crystallography, and cyclic voltammetry. The cyclic voltammogram of 3-5 revealed distinct irreversible peaks in the range of -0.9 to -1.9 V, corresponding to Ge(IV)/ Ge(II) or Ge(II)/Ge(0) couple in DMSO. We explored the anticancer activity of the complexes against a panel of cancer cell lines with IC values in the sub-micromolar range (9-15 μM). The compounds display ~3-fold selectivity in cancer cells over normal epithelial cells. In addition to the promising anticancer activity, the compounds display high complex stability in biological media, induces G1 arrest, reactive oxygen stress (ROS) accumulation, and mitochondria membrane depolarization in cancer cells. Furthermore, the compounds induce significant apoptosis.

摘要

癌症仍然是全球主要的死亡原因之一,尽管多次尝试使用化疗来对抗这种致命疾病,但毒性副作用和耐药性影响了疗效[1]。因此,需要具有潜在新机制且对正常细胞毒性较低的药物。诸如砷化合物之类的类金属在抗癌方面已显示出临床益处,但锗尚未获得如此显著的成效[2,3]。我们报告了使用简化合成方法合成的四种带有乙酰丙酮配体[Ge(acac)]且具有不同阴离子的八面体锗(IV)配合物(3 - 6)。使用核磁共振(NMR)、质谱(MS)、X射线晶体学和循环伏安法对这些化合物进行了结构和电化学表征。3 - 5的循环伏安图在 -0.9至 -1.9 V范围内显示出明显的不可逆峰,对应于二甲基亚砜(DMSO)中的Ge(IV)/Ge(II)或Ge(II)/Ge(0)电对。我们研究了这些配合物对一组癌细胞系的抗癌活性,其半数抑制浓度(IC)值在亚微摩尔范围内(9 - 15 μM)。这些化合物在癌细胞中的选择性比正常上皮细胞高约3倍。除了具有有前景的抗癌活性外,这些化合物在生物介质中显示出高配合物稳定性,可诱导癌细胞的G1期阻滞、活性氧应激(ROS)积累和线粒体膜去极化。此外,这些化合物可诱导显著的细胞凋亡。

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本文引用的文献

1
Cancer statistics, 2019.癌症统计数据,2019 年。
CA Cancer J Clin. 2019 Jan;69(1):7-34. doi: 10.3322/caac.21551. Epub 2019 Jan 8.
6
Mitochondrial metabolism and cancer.线粒体代谢与癌症。
Cell Res. 2018 Mar;28(3):265-280. doi: 10.1038/cr.2017.155. Epub 2017 Dec 8.
9
Mitochondrial membrane potential.线粒体膜电位
Anal Biochem. 2018 Jul 1;552:50-59. doi: 10.1016/j.ab.2017.07.009. Epub 2017 Jul 12.

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