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锂对本体感觉功能和神经传导的影响。

The Effects of Lithium on Proprioceptive Sensory Function and Nerve Conduction.

作者信息

Brock Kaitlyn E, Elliott Elizabeth R, Taul Alaina C, Asadipooya Artin, Bocook Devin, Burnette Tessa, Chauhan Isha V, Chhadh Bilal, Crane Ryan, Glover Ashley, Griffith Joshua, Hudson JayLa A, Kashif Hassan, Nwadialo Samuel O, Neely Devan M, Nukic Adel, Patel Deep R, Ruschman Gretchen L, Sales Johnathan C, Yarbrough Terra, Cooper Robin L

机构信息

Department of Biology, University of Kentucky, Lexington, KY 40506-0225, USA.

出版信息

NeuroSci. 2023 Oct 20;4(4):280-295. doi: 10.3390/neurosci4040023. eCollection 2023 Dec.

Abstract

Animals are exposed to lithium (Li) in the natural environment as well as by contact with industrial sources and therapeutic treatments. Low levels of exposure over time and high volumes of acute levels can be harmful and even toxic. The following study examines the effect of high-volume acute levels of Li on sensory nerve function and nerve conduction. A proprioceptive nerve in the limbs of a marine crab () was used as a model to address the effects on stretch-activated channels (SACs) and evoked nerve conduction. The substitution of Li for Na in the bathing saline slowed nerve conduction rapidly; however, several minutes were required before the SACs in sensory endings were affected. The evoked compound action potential slowed in conduction and slightly decreased in amplitude, while the frequency of nerve activity with joint movement and chordotonal organ stretching significantly decreased. Both altered responses could be partially restored with the return of a Na-containing saline. Long-term exposure to Li may alter the function of SACs in organisms related to proprioception and nerve conduction, but it remains to be investigated.

摘要

动物在自然环境中会接触到锂(Li),同时也会通过与工业源接触以及接受治疗而接触到锂。长期低剂量接触和大量急性接触都可能有害甚至有毒。以下研究考察了大量急性锂暴露对感觉神经功能和神经传导的影响。以海蟹肢体中的本体感觉神经为模型,研究其对牵张激活通道(SACs)和诱发神经传导的影响。在浴盐水中用锂替代钠会使神经传导迅速减慢;然而,感觉末梢中的SACs在几分钟后才会受到影响。诱发的复合动作电位传导减慢且幅度略有降低,而关节运动和弦音器官伸展时的神经活动频率显著降低。当含钠盐水恢复时,这两种改变的反应都可以部分恢复。长期接触锂可能会改变生物体中与本体感觉和神经传导相关的SACs功能,但仍有待研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53e8/11523691/f8e33ae7ac8e/neurosci-04-00023-g001.jpg

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