胚胎暴露于对乙酰脒杀虫剂可诱导新生大鼠小脑cd68阳性小胶质细胞和浦肯野细胞排列异常。

IF 3.3 3区 医学 Q2 PHARMACOLOGY & PHARMACY
Christine Li Mei Lee , Claire J. Brabander , Yoko Nomura , Yasunari Kanda , Sachiko Yoshida
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引用次数: 0

摘要

乙酰氨脒(ACE)是一种新烟碱类杀虫剂,因其潜在的神经发育毒性而引起人们的关注。ACE在结构上与尼古丁相似,是尼古丁乙酰胆碱受体(nAChRs)的激动剂,抗乙酰胆碱酯酶降解。此外,据报道,ACE在动物模型中破坏神经元传递并诱导发育性神经毒性和共济失调。然而,产前ACE暴露及其病理变化,包括对运动控制的影响,仍不清楚。在这项研究中,我们研究了ACE暴露的影响,重点关注与运动障碍有关的小脑神经元和胶质细胞的发育。在妊娠第15天(G)通过饲料给予妊娠Wistar大鼠20、40和60 mg/kg体重剂量的ACE。在出生后7、14和18天(对应于啮齿动物小脑成熟的关键时期)检查幼鼠小脑的发育情况。我们的数据显示,40和60 mg/kg的ACE暴露会导致P14上异常的神经元排列,以及P18上的神经元细胞损失。此外,ACE改变了小胶质细胞的行为,cd68阳性的小胶质细胞数量增加,表明暴露导致吞噬性小胶质细胞增加,以应对神经元异常,最终导致神经元细胞损失。暴露于60 mg/kg ACE的幼鼠在后肢悬吊试验中出现后肢扣合现象,提示运动障碍。这些发现表明,ACE暴露会导致发育中的浦肯野细胞的神经元细胞丢失,并促进小胶质细胞向激活模式相转移。这项研究进一步强调了神经元-胶质细胞相互作用在ACE诱导的运动障碍中的关键作用,从而有助于我们了解产前ACE暴露的潜在风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Embryonic exposure to acetamiprid insecticide induces CD68-positive microglia and Purkinje cell arrangement abnormalities in the cerebellum of neonatal rats
Concerns have been raised regarding acetamiprid (ACE), a neonicotinoid insecticide, due to its potential neurodevelopmental toxicity. ACE, which is structurally similar to nicotine, acts as an agonist of nicotinic acetylcholine receptors (nAChRs) and resists degradation by acetylcholinesterase. Furthermore, ACE has been reported to disrupt neuronal transmission and induce developmental neurotoxicity and ataxia in animal models. However, the prenatal ACE exposure and its pathological changes, including impacts on motor control, remains unclear. In this study, we investigated the effects of ACE exposure, focusing on the development of cerebellar neurons and glia, which are linked to motor impairment. ACE at doses of 20, 40-, and 60 mg/kg body weight was administered to Pregnant Wistar rats via feed on gestational day (G) 15. The developing cerebellum of the pups was examined on postnatal days (P) 7, 14, and 18, corresponding to the critical periods of cerebellar maturation in rodents. Our data revealed that ACE exposure at 40 and 60 mg/kg induced abnormal neuronal alignment on P14, and neuronal cell loss on P18. Additionally, ACE altered microglial behavior, with an increase in the number of CD68-positive microglia, suggesting that the exposure results in an increase in phagocytic microglia in response to neuronal abnormalities, ultimately leading to neuronal cell loss. Pups exposed to 60 mg/kg ACE exhibited hindlimb clasping during the hindlimb suspension test, indicating motor impairment. These findings suggest that ACE exposure causes neuronal cell loss of developing Purkinje cells and promotes a phase shift to the activate mode of microglia. This study further highlights the crucial role of neuron-glia interactions in ACE-induced motor impairment, thus contributing to our understanding of the potential risks associated with prenatal ACE exposure.
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来源期刊
CiteScore
6.80
自引率
2.60%
发文量
309
审稿时长
32 days
期刊介绍: Toxicology and Applied Pharmacology publishes original scientific research of relevance to animals or humans pertaining to the action of chemicals, drugs, or chemically-defined natural products. Regular articles address mechanistic approaches to physiological, pharmacologic, biochemical, cellular, or molecular understanding of toxicologic/pathologic lesions and to methods used to describe these responses. Safety Science articles address outstanding state-of-the-art preclinical and human translational characterization of drug and chemical safety employing cutting-edge science. Highly significant Regulatory Safety Science articles will also be considered in this category. Papers concerned with alternatives to the use of experimental animals are encouraged. Short articles report on high impact studies of broad interest to readers of TAAP that would benefit from rapid publication. These articles should contain no more than a combined total of four figures and tables. Authors should include in their cover letter the justification for consideration of their manuscript as a short article.
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