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Sarcosine attenuates toluene-induced motor incoordination memory impairment and hypothermia but not brain stimulation reward enhancement in mice

机译:sarcosine衰减甲苯诱导的电动机进势记忆障碍和低温但不是小鼠的脑刺激奖励增强

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摘要

Toluene, a widely used and commonly abused organic solvent, produces various behavioral disturbances, including motor incoordination and cognitive impairment. Toluene alters the function of a large number of receptors and ion channels. Blockade of N-methyl-d-aspartate (NMDA) receptors has been suggested to play a critical role in toluene-induced behavioral manifestations. The present study determined the effects of various toluene doses on motor coordination, recognition memory, body temperature, and intracranial self-stimulation (ICSS) thresholds in mice. Additionally, the effects of sarcosine on the behavioral and physiological effects induced by toluene were evaluated. Sarcosine may reverse toluene-induced behavioral manifestations by acting as an NMDA receptor co-agonist and inhibiting the effects of the type I glycine transporter (GlyT1). Mice were treated with toluene alone or combined with sarcosine pretreatment and assessed for rotarod performance, object recognition memory, rectal temperature, and ICSS thresholds. Toluene dose-dependently induced motor incoordination, recognition memory impairment, and hypothermia and lowered ICSS thresholds. Sarcosine pretreatment reversed toluene-induced changes in rotarod performance, novel object recognition, and rectal temperature but not ICSS thresholds. These findings suggest that the sarcosine-induced potentiation of NMDA receptors may reverse motor incoordination, memory impairment, and hypothermia but not the enhancement of brain stimulation reward function associated with toluene exposure. Sarcosine may be a promising compound to prevent acute toluene intoxications by occupational or intentional exposure.
机译:甲苯是一种广泛使用且经常滥用的有机溶剂,会产生各种行为障碍,包括运动不协调和认知障碍。甲苯会改变大量受体和离子通道的功能。 N-甲基-d-天冬氨酸(NMDA)受体的封锁已被建议在甲苯诱导的行为表现中起关键作用。本研究确定了不同剂量的甲苯对小鼠运动协调,识别记忆,体温和颅内自我刺激(ICSS)阈值的影响。另外,评估了肌氨酸对甲苯诱导的行为和生理作用的影响。肌氨酸可能通过充当NMDA受体协同激动剂并抑制I型甘氨酸转运蛋白(GlyT1)的作用来逆转甲苯诱导的行为表现。单独使用甲苯或结合肌氨酸预处理对小鼠进行治疗,并评估其旋转脚架性能,物体识别记忆,直肠温度和ICSS阈值。甲苯剂量依赖性地引起运动不协调,识别记忆障碍和体温过低,并降低了ICSS阈值。肌氨酸预处理可以逆转甲苯诱导的轮转仪性能,新颖物体识别和直肠温度变化,但不能逆转ICSS阈值。这些发现表明,肌氨酸诱导的NMDA受体增强可能逆转运动不协调,记忆障碍和体温过低,但不能增强与甲苯接触有关的脑刺激奖励功能。肌氨酸可能是预防由于职业或故意接触而引起的急性甲苯中毒的有前途的化合物。

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