Ex vivo electrophysiological evaluation of peripheral nerve functioning following exposition of adult mice to the organophosphorus pesticide chlormephos

IF 4.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Environmental toxicology and pharmacology Pub Date : 2025-03-01 Epub Date: 2025-01-27 DOI:10.1016/j.etap.2025.104645
Robert Frangež , Evelyne Benoit
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Abstract

The organophosphorus pesticide chlormephos was tested for its potential peripheral neurotoxicity by analyzing the diphasic compound action potential (CAP) of sciatic nerves isolated from adult mice chronically exposed to a sub-lethal dose of this pesticide, compared with control age-matched animals being only exposed to the vehicle. No significant modification was detected between chlormephos-exposed and control groups in their nerve responsiveness to stimulus. Furthermore, similar values of CAP kinetic variables were obtained from the two mouse groups. Finally, no abnormality concerning CAP refractory periods and responsiveness to high frequency stimulation (nerve fatigue) was exhibited by chlormephos-treated mice, when compared with control animals. These results complicate the screening for the potential neurotoxicity of organophosphates since they support the contention that the peripheral neuropathy induced by chronical exposition to sub-lethal doses of chlormephos is species dependents does not necessary correlate well with the clinical signs observed at the central nervous system level.
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成年小鼠暴露于有机磷农药氯磷后周围神经功能的体外电生理评价。
通过分析长期暴露于亚致死剂量农药的成年小鼠坐骨神经分离物的双相复合动作电位(CAP)来检测有机磷农药氯磷的潜在周围神经毒性,并与仅暴露于该车辆的年龄匹配的对照动物进行比较。暴露于氯胺磷和对照组之间的神经对刺激的反应性没有明显的改变。此外,两组小鼠的CAP动力学变量值相近。最后,与对照动物相比,氯胺磷处理的小鼠在CAP不应期和对高频刺激(神经疲劳)的反应性方面没有出现异常。这些结果使筛选有机磷潜在的神经毒性变得复杂,因为它们支持这样的论点,即慢性暴露于亚致死剂量的氯磷引起的周围神经病变是物种依赖性的,与在中枢神经系统水平上观察到的临床症状不一定有很好的相关性。
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来源期刊
CiteScore
7.00
自引率
4.70%
发文量
185
审稿时长
34 days
期刊介绍: Environmental Toxicology and Pharmacology publishes the results of studies concerning toxic and pharmacological effects of (human and veterinary) drugs and of environmental contaminants in animals and man. Areas of special interest are: molecular mechanisms of toxicity, biotransformation and toxicokinetics (including toxicokinetic modelling), molecular, biochemical and physiological mechanisms explaining differences in sensitivity between species and individuals, the characterisation of pathophysiological models and mechanisms involved in the development of effects and the identification of biological markers that can be used to study exposure and effects in man and animals. In addition to full length papers, short communications, full-length reviews and mini-reviews, Environmental Toxicology and Pharmacology will publish in depth assessments of special problem areas. The latter publications may exceed the length of a full length paper three to fourfold. A basic requirement is that the assessments are made under the auspices of international groups of leading experts in the fields concerned. The information examined may either consist of data that were already published, or of new data that were obtained within the framework of collaborative research programmes. Provision is also made for the acceptance of minireviews on (classes of) compounds, toxicities or mechanisms, debating recent advances in rapidly developing fields that fall within the scope of the journal.
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