College of Food Science and Technology, Guangdong Ocean University, Zhanjiang 524088, China.
Shenzhen Institute of Guangdong Ocean University, Shenzhen 518108, China.
Int J Environ Res Public Health. 2020 Apr 19;17(8):2808. doi: 10.3390/ijerph17082808.
Nowadays, microplastics (MPs) exist widely in the marine. The surface has strong adsorption capacity for antibiotics in natural environments, and the cytotoxicity of complex are poorly understood. In the study, 500 nm polystyrene (PS-MPs) and 60 nm nanoplastics (PS-NPs) were synthesized. The adsorption of PS to tetracycline (TC) was studied and their toxicity to gastric cancer cells (AGS) was researched. The adsorption experimental results show that PS absorbing capacity increased with increasing TC concentrations. The defense mechanism results show that 60 nm PS-NPs, 500 nm PS-MPs and their complex induce different damage to AGS cells. Furthermore, 600 mg/L PS-NPs and PS-MPs decline cell viability, induce oxidation stress and cause apoptosis. There is more serious damage of 60 nm PS-NPs than 500 nm PS-MPs in cell viability and intracellular reactive oxygen species (ROS). DNA are also damaged by 60 nm PS-NPs and PS-TC NPs, 500 nm PS-MPs and PS-TC MPs, and 60 nm PS-NPs damage DNA more serious than 500 nm PS-MPs. Moreover, 60 nm PS-NPs and PS-TC NPs seem to promote bcl-2 associated X protein (Bax) overexpression. All treatments provided us with evidence on how PS-NPs, PS-MPs and their compounds damaged AGS cells.
如今,微塑料(MPs)广泛存在于海洋中。其在自然环境中对抗生素具有很强的吸附能力,而复杂体系的细胞毒性还了解甚少。本研究合成了 500nm 聚苯乙烯(PS-MPs)和 60nm 纳米塑料(PS-NPs),研究了 PS 对四环素(TC)的吸附作用及其对胃癌细胞(AGS)的毒性。吸附实验结果表明,PS 的吸附能力随 TC 浓度的增加而增加。防御机制研究结果表明,60nm PS-NPs、500nm PS-MPs 及其复合物对 AGS 细胞造成不同的损伤。此外,600mg/L PS-NPs 和 PS-MPs 降低细胞活力,诱导氧化应激并导致细胞凋亡。60nm PS-NPs 对细胞活力和细胞内活性氧(ROS)的损伤比 500nm PS-MPs 更严重。60nm PS-NPs 和 PS-TC NPs、500nm PS-MPs 和 PS-TC MPs 还会破坏 DNA,而且 60nm PS-NPs 对 DNA 的破坏比 500nm PS-MPs 更严重。此外,60nm PS-NPs 和 PS-TC NPs 似乎促进了 bcl-2 相关 X 蛋白(Bax)的过度表达。所有这些处理都为我们提供了证据,证明了 PS-NPs、PS-MPs 及其复合物是如何损伤 AGS 细胞的。