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磷酸三甲苯酯诱导的多动和癫痫发作具有异构体特异性,且与斑马鱼中戊酸苯酯 - 神经病变靶酯酶活性抑制无关。

Hyperactivity and Seizure Induced by Tricresyl Phosphate Are Isomer Specific and Not Linked to Phenyl Valerate-Neuropathy Target Esterase Activity Inhibition in Zebrafish.

作者信息

Knoll-Gellida Anja, Dubrana Leslie E, Bourcier Laure M, Mercé Théo, Gruel Gaëlle, Soares Magalie, Babin Patrick J

机构信息

Department of Life and Health Sciences, INSERM, Maladies Rares: Génétique et Métabolisme (MRGM), U1211, Université de Bordeaux, F-33615 Pessac, France.

出版信息

Toxicol Sci. 2021 Feb 26;180(1):160-174. doi: 10.1093/toxsci/kfab006.

DOI:10.1093/toxsci/kfab006
PMID:33483753
Abstract

Environmental exposure to tricresyl phosphate (TCP) may lead to severe neurotoxic effects, including organophosphate (OP)-induced delayed neuropathy. TCP has three symmetric isomers, distinguished by the methyl group position on the aromatic ring system. One of these isomers, tri-ortho-cresyl phosphate (ToCP), has been reported for years as a neuropathic OP, targeting neuropathic target esterase (NTE/PNPLA6), but its mode of toxic action had not been fully elucidated. Zebrafish eleuthero-embryo and larva were used to characterize the differential action of the TCP isomers. The symmetric isomers inhibited phenyl valerate (PV)-NTE enzymatic activity in vivo with different IC50, while no effect was observed on acetylcholinesterase activity. Moreover, the locomotor behavior was also affected by tri-para-cresyl phosphate and tri-meta-cresyl phosphate, only ToCP exposure led to locomotor hyperactivity lasting several hours, associated with defects in the postural control system and an impaired phototactic response, as revealed by the visual motor response test. The electric field pulse motor response test demonstrated that a seizure-like, multiple C-bend-spaghetti phenotype may be significantly induced by ToCP only, independently of any inhibition of PV-NTE activity. Eleuthero-embryos exposed to picrotoxin, a known gamma-aminobutyric acid type-A receptor inhibitor, exhibited similar adverse outcomes to ToCP exposure. Thus, our results demonstrated that the TCP mode of toxic action was isomer specific and not initially related to modulation of PV-NTE activity. Furthermore, it was suggested that the molecular events involved were linked to an impairment of the balance between excitation and inhibition in neuronal circuits.

摘要

环境暴露于磷酸三甲苯酯(TCP)可能会导致严重的神经毒性作用,包括有机磷酸酯(OP)诱导的迟发性神经病。TCP有三种对称异构体,通过芳环系统上甲基的位置来区分。多年来,这些异构体之一,磷酸三邻甲苯酯(ToCP),一直被报道为一种神经性OP,靶向神经性靶酯酶(NTE/PNPLA6),但其毒性作用模式尚未完全阐明。斑马鱼幼胚和幼虫被用于表征TCP异构体的差异作用。这些对称异构体在体内以不同的半数抑制浓度(IC50)抑制戊酸苯酯(PV)-NTE酶活性,而对乙酰胆碱酯酶活性未观察到影响。此外,磷酸三对甲苯酯和磷酸三间甲苯酯也会影响运动行为,只有暴露于ToCP会导致持续数小时的运动亢进,与姿势控制系统缺陷和光趋性反应受损有关,这在视觉运动反应测试中得到了揭示。电场脉冲运动反应测试表明,只有ToCP可显著诱导类似癫痫发作的多C形弯曲面条样表型,与对PV-NTE活性的任何抑制无关。暴露于印防己毒素(一种已知的γ-氨基丁酸A型受体抑制剂)的幼胚表现出与暴露于ToCP类似的不良结果。因此,我们的结果表明,TCP的毒性作用模式具有异构体特异性,最初与PV-NTE活性的调节无关。此外,有人提出所涉及的分子事件与神经回路中兴奋与抑制平衡的受损有关。

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