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微聚苯乙烯塑料和苯并[a]芘暴露会影响内分泌系统,导致鲫鱼产生生理应激。

Micro-polystyrene plastic and benzo[α]pyrene exposure affects the endocrine system and causes physiological stress in Carassius auratus.

机构信息

Department of Convergence Study on the Ocean Science and Technology, Korea Maritime and Ocean University, Busan 49112, Republic of Korea.

Department of Marine Life Sciences, Jeju National University, Jeju 63243, Korea.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2023 Sep;271:109695. doi: 10.1016/j.cbpc.2023.109695. Epub 2023 Jun 30.

Abstract

Microplastics, owing to their hydrophobic properties and the various chemicals used in their production, can act as carriers of persistent organic pollutants, such as polycyclic aromatic hydrocarbons (PAHs). In this study, we exposed the goldfish Carassius auratus to benzo[α]pyrene (BaP, 10 μg/L), a representative PAH, and micro-polystyrene plastic (MP; 10 and 100 beads/L), of size 1.0 μm, as a single or complex environmental stressor, and evaluated the stress response and the resulting DNA damage. The expression of CRH and ACTH mRNA in the pituitary gland and hypothalamus, of the hypothalamus-pituitary-interrenal (HPI) axis, increased significantly after 6 h of exposure. Plasma cortisol levels showed a similar trend to the expression of stress-regulating genes along the HPI axis, and a significant increase was observed in the combined exposure groups (BaP + LMP [low-concentration MP] and BaP + HMP [high-concentration MP]) compared to those in the single exposure group. HO concentration and CYP1A1 and MT mRNA expression levels in the liver were significantly higher in the combined exposure groups compared with in the single exposure groups. In situ hybridization revealed a similar pattern of MT mRNA expression, and many signals were observed in the BaP + HMP group. Furthermore, the BaP + HMP group showed more DNA damage, and the degree of DNA damage increased with exposure time for all experimental groups, except for the control group. Therefore, exposure to BaP and MP alone can induce stress in goldfish; however, when a combination of both substances is provided, their synergistic effect leads to increased stress and DNA damage. MP was confirmed to be a more serious stress-inducing factor in goldfish than BaP, based on the expression levels of stress-regulating genes along the HPI axis.

摘要

微塑料因其疏水性和生产中使用的各种化学物质,可以作为持久性有机污染物(POPs)的载体,如多环芳烃(PAHs)。在这项研究中,我们将金鱼(Carassius auratus)暴露于苯并[a]芘(BaP,10μg/L),一种代表性的多环芳烃,以及微聚苯乙烯塑料(MP;10 和 100 个珠子/L),尺寸为 1.0μm,作为单一或复合环境胁迫源,并评估了应激反应和由此产生的 DNA 损伤。HPI 轴中垂体和下丘脑的 CRH 和 ACTH mRNA 的表达在暴露 6 小时后显著增加。血浆皮质醇水平与 HPI 轴中应激调节基因的表达趋势相似,并且在联合暴露组(BaP+LMP [低浓度 MP]和 BaP+HMP [高浓度 MP])中观察到显著增加,与单一暴露组相比。与单一暴露组相比,联合暴露组(BaP+LMP 和 BaP+HMP)中肝脏的 HO 浓度和 CYP1A1 和 MT mRNA 表达水平显著升高。原位杂交显示 MT mRNA 表达模式相似,并且在 BaP+HMP 组中观察到许多信号。此外,BaP+HMP 组显示出更多的 DNA 损伤,并且除对照组外,所有实验组的 DNA 损伤程度都随暴露时间的增加而增加。因此,单独暴露于 BaP 和 MP 会导致金鱼产生应激;然而,当两种物质同时存在时,它们的协同作用会导致应激和 DNA 损伤增加。根据 HPI 轴中应激调节基因的表达水平,MP 被证实是金鱼更严重的应激诱导因素。

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