Ewing Madison D, Medler Scott
Neuroscience Department, Brown University, Providence, RI 02912.
Biology Department, SUNY Fredonia, Fredonia, NY 14063.
J Undergrad Neurosci Educ. 2020 Jun 28;18(2):A121-A128. eCollection 2020 Spring.
The crayfish stretch receptor organ (SRO) preparation represents a robust experimental model for undergraduate laboratory experiences. For example, this preparation may be included as part of a course-based undergraduate research experience (CURE), where students work independently to plan and carry out their own experiments. In the current paper, we provide an example of how local anesthetics may be used to manipulate the SRO preparation and to perform quantitative analyses of SRO action potential firing rates. Local anesthetics provide interesting tools for manipulating physiological responses within the nervous system. A variety of inexpensive anesthetics are available for student use and each of these is expected to inhibit neurophysiological responses. While specific anesthetics exhibit subtle differences in chemical organization, they are generally understood to block voltage gated sodium channels. In the current study, we investigated the effects of two local anesthetics, MS-222 and procaine, on the action potential firing rate from the crayfish SRO. Using quantitative analyses of SRO action potential generation, we determined that each anesthetic has unique inhibitory effects on action potential firing rate that may be explained by their neuropharmacological properties. This manipulation may thus be utilized as an interesting experimental tool in undergraduate teaching laboratories. Local anesthetics applied to crayfish SRO preparations can thus be used to deepen student understanding of local anesthetics, exercise quantitative analyses, and provide experimental tools for independent experimental design.
小龙虾伸展感受器器官(SRO)标本是本科实验室实验中一个强大的实验模型。例如,这个标本可作为基于课程的本科研究经验(CURE)的一部分,学生在其中独立工作以计划和开展自己的实验。在本文中,我们提供了一个示例,说明局部麻醉剂如何用于操控SRO标本并对SRO动作电位发放率进行定量分析。局部麻醉剂为操控神经系统内的生理反应提供了有趣的工具。有多种廉价的麻醉剂可供学生使用,并且预计每种麻醉剂都会抑制神经生理反应。虽然特定的麻醉剂在化学结构上表现出细微差异,但一般认为它们会阻断电压门控钠通道。在当前研究中,我们研究了两种局部麻醉剂MS - 222和普鲁卡因对小龙虾SRO动作电位发放率的影响。通过对SRO动作电位产生的定量分析,我们确定每种麻醉剂对动作电位发放率都有独特的抑制作用,这可以由它们的神经药理学特性来解释。因此,这种操控可作为本科教学实验室中一个有趣的实验工具。应用于小龙虾SRO标本的局部麻醉剂因此可用于加深学生对局部麻醉剂的理解、进行定量分析,并为独立实验设计提供实验工具。