Zhuo Junqi, Ou Zihui, Zhang Yuhan, Jackson Elizabeth M, Shankar Sachin S, McPheeters Matthew T, Ford Jeremy B, Jansen E Duco, Chiel Hillel J, Jenkins Michael W
Case Western Reserve University, Department of Biomedical Engineering, Cleveland, Ohio, United States.
Case Western Reserve University, Department of Biology, Cleveland, Ohio, United States.
Neurophotonics. 2021 Jan;8(1):015005. doi: 10.1117/1.NPh.8.1.015005. Epub 2021 Feb 19.
Infrared (IR) inhibition can selectively block peripheral sensory nerve fibers, a potential treatment for autonomic-dysfunction-related diseases (e.g., neuropathic pain and interstitial cystitis). Lowering the IR inhibition threshold can increase its translational potentials. Infrared induces inhibition by enhancing potassium channel activation. We hypothesized that the IR dose threshold could be reduced by combining it with isotonic ion replacement. We tested the IR inhibition threshold on the pleural-abdominal connective of . Using a customized chamber system, the IR inhibition was applied either in normal saline or in isotonic ion-replaced saline, which could be high glucose saline, high choline saline, or high glucose/high choline saline. Each modified saline was at a subthreshold concentration for inhibiting neural conduction. We showed that isotonically replacing ions in saline with glucose and/or choline can reduce the IR threshold and temperature threshold of neural inhibition. Furthermore, the size selectivity of IR inhibition was preserved when combined with high glucose/high choline saline. The present work of IR inhibition combined with isotonic ion replacement will guide further development of a more effective size-selective IR inhibition modality for future research and translational applications.
红外(IR)抑制可选择性阻断外周感觉神经纤维,这是一种治疗自主神经功能障碍相关疾病(如神经性疼痛和间质性膀胱炎)的潜在方法。降低IR抑制阈值可提高其转化潜力。红外通过增强钾通道激活来诱导抑制作用。我们假设通过将红外与等渗离子替代相结合可以降低红外剂量阈值。我们在[具体动物]的胸腹结缔组织上测试了红外抑制阈值。使用定制的腔室系统,在生理盐水或等渗离子替代盐水中施加红外抑制,等渗离子替代盐水可以是高糖盐水、高胆碱盐水或高糖/高胆碱盐水。每种改良盐水的浓度均低于抑制神经传导的阈值。我们发现,用葡萄糖和/或胆碱等渗替代盐水中的离子可降低神经抑制的红外阈值和温度阈值。此外,当与高糖/高胆碱盐水联合使用时,红外抑制的尺寸选择性得以保留。目前关于红外抑制与等渗离子替代相结合的研究将为未来研究和转化应用中更有效的尺寸选择性红外抑制方式的进一步发展提供指导。