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褪黑素负载壳聚糖-三聚磷酸纳米粒子:在减轻依托泊苷诱导的 HepG2 细胞遗传毒性中的应用。

Melatonin Loading Chitosan-Tripolyphosphate Nanoparticles: Application in Attenuating Etoposide-Induced Genotoxicity in HepG2 Cells.

出版信息

Pharmacology. 2018;102(1-2):74-80. doi: 10.1159/000489667. Epub 2018 Jun 25.

Abstract

Etoposide is one of the most effective chemotherapeutic agents used in the treatment of various types of cancers. However, as a Topoisomerase II inhibitor, during clinical use, several side effects may occur. In addition, in several in vivo and in vitro studies, etoposide has been shown to have a range of genotoxic effects including single and double strand breaks. Melatonin is an anti-aging and antioxidant hormone synthesized from the pineal gland. The genoprotective, antioxidant, and free radical scavenger properties of melatonin have been well explained in various studies. The aim of this study was to explore whether melatonin nanoparticles protects against etoposide-induced genotoxicity in the HepG2 cell line. HepG2 cells (25 × 104 cells/well) were cultured in 24-well plates: a control group and 3 melatonin and its nanoparticles + etoposide groups (pre- and cotreatment conditions). Our results show that etoposide induced a noticeable genotoxic effect in HepG2 cells. Melatonin reduced the effects of etoposide significantly in both types of experiment conditions, through the reduction of the level of DNA damage measured via comet assay. Furthermore, melatonin decreased the intracellular reactive oxygen species generation. It also increased the intracellular glutathione levels in HepG2 cells. Nano melatonin is more effective than regular melatonin. The most protective effect was observed with melatonin when it was administrated 24 h before etoposide treatment.

摘要

依托泊苷是治疗各种类型癌症最有效的化疗药物之一。然而,作为拓扑异构酶 II 抑制剂,在临床应用中,可能会出现几种副作用。此外,在几项体内和体外研究中,依托泊苷已显示出一系列遗传毒性作用,包括单链和双链断裂。褪黑素是由松果腺合成的抗衰老和抗氧化激素。褪黑素的基因保护、抗氧化和自由基清除特性在各种研究中得到了很好的解释。本研究旨在探讨褪黑素纳米粒是否能预防依托泊苷诱导的 HepG2 细胞系的遗传毒性。将 HepG2 细胞(25×104 个细胞/孔)培养在 24 孔板中:对照组和 3 个褪黑素及其纳米粒+依托泊苷组(预治疗和共治疗条件)。我们的结果表明,依托泊苷在 HepG2 细胞中诱导了明显的遗传毒性作用。褪黑素在两种实验条件下均显著降低了依托泊苷的作用,通过彗星试验测量的 DNA 损伤水平降低来体现。此外,褪黑素降低了细胞内活性氧的产生。它还增加了 HepG2 细胞内的谷胱甘肽水平。纳米褪黑素比普通褪黑素更有效。当在依托泊苷处理前 24 小时给予褪黑素时,观察到最有效的保护作用。

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