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内分泌干扰物毒性中的免疫与神经系统相互作用:以莠去津为例。

Immune and Nervous Systems Interaction in Endocrine Disruptors Toxicity: The Case of Atrazine.

作者信息

Galbiati Valentina, Buoso Erica, d'Emmanuele di Villa Bianca Roberta, Paola Rosanna Di, Morroni Fabiana, Nocentini Giuseppe, Racchi Marco, Viviani Barbara, Corsini Emanuela

机构信息

Università degli Studi di Milano, Milano, Italy.

Department of Pharmacological and Biomolecular Sciences, Università degli Studi di Milano, Milan, Italy.

出版信息

Front Toxicol. 2021 Mar 10;3:649024. doi: 10.3389/ftox.2021.649024. eCollection 2021.

Abstract

Endocrine disruptors (ED) are natural and anthropogenic chemicals that can interfere with hormonal systems at different levels. As such, ED-induced alterations in hormone functions have been implicated in many diseases and pathological conditions, including adverse developmental, reproductive, neurological, cardiovascular, and immunological effects in mammals. The fact that ED may compete with several endogenous hormones for multiple receptors and pathways is not always fully considered. This results in a complex response that depends on the cellular context in terms of receptors and interacting proteins and, thus, may differ between tissues and circumstances. Microglia, neurons, and other immune cells are potential targets and still underappreciated actors in endocrine disruption. Due to the large scale of this topic, this review is not intended to provide a comprehensive review nor a systematic review of chemicals identified as endocrine disruptors. It focuses on the immune-neuro-endocrine network in ED toxicity and research gaps, using atrazine as an example to highlight this complexity and the interrelationship between the immune, endocrine, and nervous systems, and ED.

摘要

内分泌干扰物(ED)是天然和人为产生的化学物质,它们可在不同水平干扰激素系统。因此,ED引起的激素功能改变与许多疾病和病理状况有关,包括对哺乳动物发育、生殖、神经、心血管和免疫方面产生的不良影响。ED可能与多种内源性激素竞争多个受体和途径这一事实并未始终得到充分考虑。这导致了一种复杂的反应,该反应取决于细胞内受体和相互作用蛋白的情况,因此,在不同组织和情况下可能有所不同。小胶质细胞、神经元和其他免疫细胞是内分泌干扰中的潜在靶点,但仍未得到充分重视。由于该主题范围广泛,本综述无意对已确定为内分泌干扰物的化学物质进行全面或系统的综述。它以阿特拉津为例,重点关注ED毒性中的免疫 - 神经 - 内分泌网络以及研究空白,以突出这种复杂性以及免疫、内分泌和神经系统与ED之间的相互关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6381/8915797/cb1f6f2afe80/ftox-03-649024-g0001.jpg

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