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暴露于高效氯氟氰菊酯拟除虫菊酯杀虫剂下对肝脏形态测量及组织病理学的影响。

Liver morphometry and histopathology effects in exposed to lambda-cyhalothrin pyrethroid insecticide.

作者信息

da Silva Tiago Venancio, Nascimento Silva André Luiz do, Farias Karine Nathiele Nogueira, Rivero Wendt Carla Leticia Gediel, de Oliveira Brasileiro Lucas, Fogaça Edilaine, Gonçalves Sabrina Fuzer, de Oliveira Martins Brenda, Garcia Maria Eduarda Corona, Franco-Belussi Lilian, Fernandes Carlos Eurico S

机构信息

Universidade Federal de Mato Grosso do Sul - UFMS, Av. Costa e Silva, s/n, Universitário, Campo Grande, MS 79002-970, Brazil.

Laboratório de Patologia Experimental - LAPEx, Instituto de Biociências - INBIO, Av. Costa e Silva, s/n, Universitá∼rio, Campo Grande, MS 79002-970, Brazil.

出版信息

Toxicol Rep. 2025 Jan 20;14:101919. doi: 10.1016/j.toxrep.2025.101919. eCollection 2025 Jun.

Abstract

Lambda-cyhalothrin (LC) is a pyrethroid insecticide employed to manage various arthropods as an alternative to persistent insecticides with minimized toxic effects on birds and mammals. However, LC causes oxidative and neurotoxic damages in fish . Effects of LC in morphology of liver of fishes are scare. We aimed to establish the lethal concentration (LC 96 h) of pyrethroid LC for . Then, we compare liver responses of sublethal doses of LC (i.e. 10.30 µg/L) for acute (i.e 1- and 3-days post-exposure - ) and chronic (i.e 6 and 12 ). We sought to identify pathological changes and compare liver histometric remodeling in fish subjected to acute and chronic toxicity tests. For this, liver histological changes were evaluated using the degree of tissue changes (DTC), followed by histomorphometric techniques determining structural volumetric density, glycogen cell density, and morphometry of hepatic tissue. We observed high hepatocellular injuries in exposed fishes. The main injuries included leukocyte infiltration, hyperemia, and pyknotic nuclei, especially 6 dpe. Hepatic glycogen storage decreases at 6 and 12 showing metabolic damage. Both, density and volume of decreases after LC exposure in all exposure time. However, sinusoidal density increases after LC exposure, suggesting vascular hyperemia. These results show morphophysiological effects of LC at 10.30 µg/L in acute and chronic exposure represented by decreased glycogen storage, structural density, and volume of hepatocytes, in addition to a higher degree of histological changes.

摘要

高效氯氟氰菊酯(LC)是一种拟除虫菊酯类杀虫剂,用于防治各种节肢动物,作为对鸟类和哺乳动物毒性作用最小的持久性杀虫剂的替代品。然而,LC会对鱼类造成氧化损伤和神经毒性损伤。LC对鱼类肝脏形态的影响尚不清楚。我们旨在确定拟除虫菊酯LC对[具体对象未明确]的致死浓度(96小时LC)。然后,我们比较了亚致死剂量LC(即10.30μg/L)对急性(即暴露后1天和3天)和慢性(即6天和12天)的肝脏反应。我们试图识别病理变化,并比较经受急性和慢性毒性试验的鱼类肝脏组织形态计量学重塑情况。为此,使用组织变化程度(DTC)评估肝脏组织学变化,随后采用组织形态计量学技术确定肝脏组织的结构体积密度、糖原细胞密度和形态测量。我们观察到暴露鱼类中肝细胞损伤严重。主要损伤包括白细胞浸润、充血和固缩核,尤其是在暴露后6天。在6天和12天时肝脏糖原储存减少,表明存在代谢损伤。在所有暴露时间内,LC暴露后肝细胞的密度和体积均下降。然而,LC暴露后肝血窦密度增加,表明血管充血。这些结果表明,在急性和慢性暴露中,10.30μg/L的LC具有形态生理效应,表现为糖原储存减少、肝细胞结构密度和体积减小,以及更高程度的组织学变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/565e/11799965/02631baa7127/ga1.jpg

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