Meng Youqiang, Dong Li, Sun Biying, Luo Ping, Zhang Guohua, Rong Weifang
Hongqiao International Institute of Medical Research, Tongren Hospital and Department of Physiology, Faculty of Basic Medical Sciences, Shanghai Jiaotong University School of Medicine.
Hongqiao International Institute of Medical Research, Tongren Hospital and Department of Physiology, Faculty of Basic Medical Sciences, Shanghai Jiaotong University School of Medicine;
J Vis Exp. 2017 Sep 27(127):56090. doi: 10.3791/56090.
Dysfunction of the colonic sensory nerves has been implicated in the pathophysiology of several common conditions, including functional and inflammatory bowel diseases and diabetes. Here, we describe a protocol for the in vitro characterization of the electrophysiological properties of colonic afferents in rats. The colorectum, with the intact pelvic ganglion (PG) attached, is removed from the rat; superfused with carbogenated Krebs solution in the recording chamber; and cannulated at the oral and anal ends to allow for distension. A fine nerve bundle emanating from the PG is identified, and the multiunit afferent nerve activity is recorded using a suction electrode. Distension of the colonic segment elicits gradual increases in multiunit discharge. A principal component analysis is conducted to differentiate the low-threshold, the high-threshold, and the wide-dynamic range afferent fibers. Chemical sensitivity of colonic afferents can be studied through the bath or intraluminal administration of test compounds. This protocol can be modified for application to other species, such as mice and guinea pigs, and to study the differences in the electrophysiological properties of thoracolumbar/hypogastric and lumbosacral/pelvic afferents of the descending colon in normal and pathological conditions.
结肠感觉神经功能障碍与多种常见病症的病理生理学有关,包括功能性和炎症性肠病以及糖尿病。在此,我们描述了一种用于体外表征大鼠结肠传入神经电生理特性的方案。将附着完整盆腔神经节(PG)的结肠直肠从大鼠体内取出;在记录室中用含二氧化碳的 Krebs 溶液进行灌流;并在口端和肛端插管以进行扩张。识别出从 PG 发出的一束细神经束,并使用吸电极记录多单位传入神经活动。结肠段的扩张会引起多单位放电逐渐增加。进行主成分分析以区分低阈值、高阈值和宽动态范围的传入纤维。结肠传入神经的化学敏感性可以通过在浴槽中或腔内给予测试化合物来研究。该方案可进行修改以应用于其他物种,如小鼠和豚鼠,并用于研究正常和病理条件下降结肠胸腰段/腹下神经和腰骶段/盆腔传入神经电生理特性的差异。