Method for measuring cervical vagal nerve activity in conscious rats.

IF 4.2 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Kenju Miki, Wakana Miyaura, Shizuka Ikegame, Misa Yoshimoto
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引用次数: 0

Abstract

The current study aimed to propose a method to directly measure right cervical vagal nerve activity (cVNA) alongside renal sympathetic nerve activity (RSNA) in conscious rats. The right cervical vagus nerve was surgically exposed and fitted with a bipolar electrode to record cVNA. A microcatheter was used to administer levobupivacaine to selectively block afferent cVNA. Upon levobupivacaine administration, cVNA was reduced by 84%, enabling the exclusive assessment of efferent cVNA. Intravenous and intraperitoneal administration of cholecystokinin-8 (CCK-8) demonstrated that peripherally acting CCK-8 influences the central nervous system through afferent cVNA without affecting the RSNA or efferent cVNA. This technique can be highly applicable for quantifying the dynamic changes in the interaction between vagal and sympathetic nerve activities, thereby shedding light on their roles in maintaining homeostasis and developing autonomic dysfunction, as in obesity and diabetes.NEW & NOTEWORTHY This study proposed a method for directly measuring cervical vagal nerve activity and reversibly blocking afferent cVNA in conscious rats. It demonstrated that CCK-8, when administered intraperitoneally, distinctly influences peripheral afferent vagal nerve activity without affecting renal sympathetic nerve activity, arterial pressure, or heart rate.

清醒大鼠颈迷走神经活动测定方法。
本研究旨在提出一种直接测量清醒大鼠右颈迷走神经活动(cVNA)和肾交感神经活动(RSNA)的方法。手术暴露右侧颈迷走神经并安装双极电极记录cVNA。微导管给药左布比卡因选择性阻断传入cVNA。左布比卡因给药后,cVNA减少了84%,可以对输出cVNA进行排他性评估。静脉和腹腔注射胆囊收缩素-8 (CCK-8)表明,外周作用的CCK-8通过传入cVNA影响中枢神经系统,而不影响RSNA或传出cVNA。这项技术可以高度适用于量化迷走神经和交感神经活动之间相互作用的动态变化,从而揭示它们在维持体内平衡和发展自主神经功能障碍中的作用,如肥胖和糖尿病。
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来源期刊
CiteScore
9.80
自引率
0.00%
发文量
98
审稿时长
1 months
期刊介绍: The American Journal of Physiology-Endocrinology and Metabolism publishes original, mechanistic studies on the physiology of endocrine and metabolic systems. Physiological, cellular, and molecular studies in whole animals or humans will be considered. Specific themes include, but are not limited to, mechanisms of hormone and growth factor action; hormonal and nutritional regulation of metabolism, inflammation, microbiome and energy balance; integrative organ cross talk; paracrine and autocrine control of endocrine cells; function and activation of hormone receptors; endocrine or metabolic control of channels, transporters, and membrane function; temporal analysis of hormone secretion and metabolism; and mathematical/kinetic modeling of metabolism. Novel molecular, immunological, or biophysical studies of hormone action are also welcome.
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