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Targeting TRPV1 to relieve motion sickness symptoms in mice by electroacupuncture and gene deletion

机译:靶向TRPV1以通过电针和基因缺失缓解小鼠晕车症状

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摘要

Motion sickness (MS) is an acute disorder that occurs in healthy individuals worldwide regardless of gender, age, or ethnicity. Our study used a mouse model to rule out the effects of any psychological factors related to MS and EA. Subjects were randomly separated into four groups, namely the control group (Con), motion sickness inducing group (MS), mentioning sickness inducing with electroacupuncture treatment group (EA) and motion sickness inducing only in TRPV1 knockout mice group (TRPV1−/−). The consumption of kaolin, a non-nutrient substance, was measured as a behavior observed response of an emetic reflex in a murine model. This behavior is referred to as pica behavior. Our results showed that pica behavior was observed in the MS group. Moreover, kaolin consumption in the EA group decreased to the average baseline of the control group. A similar result was observed in TRPV1 null mice. We also observed an increase of TRPV1 and related molecules in the thalamus, hypothalamic and brain stem after MS stimulation and a significant decrease in the EA and TRPV1 null groups. This is the first study to demonstrate that TRPV1 pathways are possibly associated with mechanisms of MS, and can be attended through EA or TRPV1 genetic manipulation.
机译:晕动病(MS)是一种急性疾病,无论性别,年龄或种族,在全世界的健康个体中都会发生。我们的研究使用小鼠模型来排除与MS和EA相关的任何心理因素的影响。将受试者随机分为四组,即对照组(Con),晕动病诱发组(MS),提及电针治疗组(EA)诱发晕动病和仅TRPV1基因敲除小鼠组诱发晕动病(TRPV1 - / − )。将高岭土(一种非营养物质)的消耗量作为在鼠模型中观察到的催吐反射反应的行为进行了测量。此行为称为pica行为。我们的结果表明,在MS组中观察到了pica行为。此外,EA组的高岭土消耗量降至对照组的平均基线。在TRPV1 null小鼠中观察到了相似的结果。我们还观察到MS刺激后丘脑,下丘脑和脑干中TRPV1和相关分子的增加,并且EA和TRPV1无效组的显着减少。这是第一个证明TRPV1途径可能与MS机制相关的研究,并且可以通过EA或TRPV1基因操作参与其中。

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