氟西汀与微塑料在斑马鱼胚胎发育中的毒性相互作用

IF 8 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Science of the Total Environment Pub Date : 2025-03-20 Epub Date: 2025-03-05 DOI:10.1016/j.scitotenv.2025.179040
José Manuel Orozco-Hernández , Josué David Hernández-Varela , Leobardo Manuel Gómez-Oliván , José Jorge Chanona-Pérez , Misael Hernández-Díaz , Nely San Juan-Reyes , Karina Elisa Rosales-Pérez , Sindy San Juan-Reyes
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引用次数: 0

摘要

越来越多地使用抗抑郁药,特别是氟西汀(FLX),由于市政、工业和医院的废水排放,导致它们存在于水生环境中。同时,微塑料(MPs)在短期(急性)暴露下已被广泛研究,显示出氧化应激、行为改变和神经毒性等不利影响。然而,这些化合物的胚胎毒性和致畸作用,以及它们对水生生态系统中鱼类胚胎的生存、发育、形态、行为和繁殖的影响仍然有限。本研究评估了环境相关浓度下FLX (5,40 ng/L)、MPs(25,100颗粒/L)及其混合物(FLX-MPs)的毒性作用。显微镜下对荧光MPs进行了表征,并在24和96 hpf的小鼠胚胎中评估了它们的存在,观察了它们在绒毛膜中的定位。在胚胎毒性和致畸试验中,FLX (100 ng/L)增加了畸形发生率,包括脊柱变形(CD)、尾部变形(TM)和色素沉着(H);MPs诱导脊柱侧弯(S),尾巴变形(TM),不完全孵化(IE)和畸形的剂量依赖性增加。FLX-MPs混合物引起心包水肿(PE)、尾巴和脊柱变形、孵化延迟(HR)和死亡率增加。氧化损伤分析显示,FLX (40 ng/L)剂量依赖性地增加了SOD和CAT活性,并增加了细胞氧化生物标志物(LPX, POX, HPX)。此外,MPs(100颗粒/L)也具有类似的作用,可提高SOD、CAT、POX和HPX的活性。FLX-MPs混合物表现出最明显的反应。在基因表达方面,FLX (5,40 ng/L)可调节bax、blc2和casp3等基因。MPs(25、100粒/L)诱导bax、blc2、p53和casp3的表达。FLX-MPs混合物(25粒/L-40 ng/L, 100粒/L-40 ng/L)表达nfr1、p53、nfe2l2a和casp3。组织学损伤表现为40 ng/L FLX时肌纤维异常(AMF)和卵黄囊水肿(YSE), MPs(100颗粒/L)时板层融合(LF)和脊柱侧凸(S)。在FLX-MPs混合物中检测到脑肿胀(IBT)和神经肥大损失(NL)。综上所述,FLX和MPs及其组合均影响斑马鱼的胚胎发育和生理状态。
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Toxic interactions between fluoxetine and microplastics in zebrafish embryonic development
The increasing use of antidepressants, especially fluoxetine (FLX), has resulted in their presence in aquatic environments due to wastewater discharges from municipal, industrial, and hospital sources. Simultaneously, microplastics (MPs) have been extensively studied in short-term (acute) exposures, showing adverse effects such as oxidative stress, behavioral alterations and neurotoxicity. However, the embryotoxic and teratogenic effects of these compounds, as well as their impacts on the survival, development, morphology, behavior, and reproduction of fish embryos in aquatic ecosystems, remain limited. This study evaluated the toxic effects of FLX (5, 40 ng/L), MPs (25, 100 particles/L) and their mixtures (FLX-MPs) at environmentally relevant concentrations. Microscopic characterization of fluorescent MPs was performed, and their presence was evaluated in Danio rerio embryos at 24 and 96 hpf, observing their localization in the chorion. In embryotoxicity and teratogenesis tests, FLX (100 ng/L) increased the rate of malformations, including deformations of the spine (CD), tail (TM) and hypopigmentation (H); MPs induced scoliosis (S), tail deformation (TM), incomplete hatching (IE) and a dose-dependent increase in malformations. FLX-MPs mixtures caused pericardial edema (PE), tail and spine deformation, delayed hatching (HR) and increased mortality. Oxidative damage analysis showed that FLX (40 ng/L) dose-dependently increased SOD and CAT activities, with an increase in cellular oxidation biomarkers (LPX, POX, HPX). Besides, MPs (100 particles/L) showed similar effects, with increased SOD, CAT, POX and HPX activities. The FLX-MPs mixture showed the most pronounced response. In gene expression, FLX (5, 40 ng/L) modulated genes such as bax, blc2 and casp3. MPs (25, 100 particles/L) induced the expression of bax, blc2, p53 and casp3. FLX-MPs mixtures (25 particles/L-40 ng/L, 100 particles/L-40 ng/L) expressed nfr1, p53, nfe2l2a and casp3. Histological damage revealed abnormal muscle fibers (AMF) and yolk sac edema (YSE) at 40 ng/L FLX, and lamellar fusion (LF) and scoliosis (S) in MPs (100 particles/L). Brain swelling (IBT) and neuromast loss (NL) were detected in FLX-MPs mixtures. In conclusion, both FLX and MPs and their combinations affect the embryonic development and physiological state of Danio rerio.
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来源期刊
Science of the Total Environment
Science of the Total Environment 环境科学-环境科学
CiteScore
17.60
自引率
10.20%
发文量
8726
审稿时长
2.4 months
期刊介绍: The Science of the Total Environment is an international journal dedicated to scientific research on the environment and its interaction with humanity. It covers a wide range of disciplines and seeks to publish innovative, hypothesis-driven, and impactful research that explores the entire environment, including the atmosphere, lithosphere, hydrosphere, biosphere, and anthroposphere. The journal's updated Aims & Scope emphasizes the importance of interdisciplinary environmental research with broad impact. Priority is given to studies that advance fundamental understanding and explore the interconnectedness of multiple environmental spheres. Field studies are preferred, while laboratory experiments must demonstrate significant methodological advancements or mechanistic insights with direct relevance to the environment.
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