Zheng Zi-Yi, Yang Yu-Ting, Zhou Jing-Xuan, Peng Zhao-Xing, Ni Hong-Gang
School of Urban Planning and Design, Peking University Shenzhen Graduate School, Shenzhen 518055, China.
Toxics. 2024 Sep 30;12(10):714. doi: 10.3390/toxics12100714.
There are enormous differences in benzo[a]pyrene (BaP) acute toxicity tests on , according to previous publications. The explanations of the reasons for this extreme variation are necessary. In this context, the acute toxicity tests of different experiment conditions (light/dark, culture medium, and solvent) were conducted on with BaP as the toxicant of concern. Based on the experiments above, molecular dynamics (MD) simulations were employed to investigate the mechanisms of action. According to our results, the significant influence of light exposure on the acute toxicity test of BaP ( < 0.05) on was recorded. On the basis of the MD simulations, it was possible that BaP may not affect the normal operation of Superoxide Dismutase and Catalase directly, and it could be quickly transferred from the body through Glutathione S-transferase and Cytochromes P450. Therefore, when exposed to light, the oxidative stress process intensifies, causing damage to . Apparently, the ecotoxicity tests based on inhibition for cannot adequately reflect the toxic effects of BaP.
根据以往的出版物,关于苯并[a]芘(BaP)急性毒性试验存在巨大差异。有必要解释这种极端差异产生的原因。在此背景下,以BaP作为关注的毒物,在不同实验条件(光照/黑暗、培养基和溶剂)下对[具体受试对象未给出]进行了急性毒性试验。基于上述实验,采用分子动力学(MD)模拟来研究作用机制。根据我们的结果,记录到光照对BaP在[具体受试对象未给出]上的急性毒性试验有显著影响(P<0.05)。基于MD模拟,BaP可能不会直接影响超氧化物歧化酶和过氧化氢酶的正常运作,并且它可以通过谷胱甘肽S-转移酶和细胞色素P450从体内快速转移。因此,当暴露于光照时,氧化应激过程加剧,对[具体受试对象未给出]造成损害。显然,基于对[具体受试对象未给出]抑制作用的生态毒性试验不能充分反映BaP的毒性效应。