Department of Biology, University of Kentucky, Lexington, KY, 40506, USA.
Department of Biological Sciences, Northern Kentucky University, Highland Heights, KY, 41099, USA.
Invert Neurosci. 2020 May 30;20(3):10. doi: 10.1007/s10158-020-00243-5.
Tricaine mesylate, also known as MS-222, was investigated to characterize its effects on sensory neurons, synaptic transmission at the neuromuscular junction, and heart rate in invertebrates. Three species were examined: Drosophila melanogaster, blue crab (Callinectes sapidus), and red swamp crayfish (Procambarus clarkii). Intracellular measures of action potentials in motor neurons of the crayfish demonstrated that MS-222 dampened the amplitude, suggesting that voltage-gated Na + channels are blocked by MS-222. This is likely the mechanism behind the reduced activity measured in sensory neurons and depressed synaptic transmission in all three species as well as reduced cardiac function in the larval Drosophila. To address public access to data, a group effort was used for analysis of given data sets, blind to the experimental design, to gauge analytical accuracy. The determination of a threshold in analysis for measuring extracellular recorded sensory events is critical and is not easily performed with commercial software.
甲磺酸三甲卡因,又称 MS-222,用于研究其对感觉神经元、神经肌肉接头处的突触传递和无脊椎动物心率的影响。共检测了三个物种:黑腹果蝇、蓝蟹(Callinectes sapidus)和红沼泽小龙虾(Procambarus clarkii)。对小龙虾运动神经元动作电位的细胞内测量表明,MS-222 降低了振幅,表明电压门控 Na+通道被 MS-222 阻断。这可能是在所有三个物种中测量到的感觉神经元活性降低、突触传递抑制以及幼虫果蝇心脏功能降低的背后机制。为了解决公众对数据的访问问题,研究小组使用给定数据集进行了分析,对实验设计一无所知,以评估分析的准确性。确定用于测量细胞外记录感觉事件的分析阈值是关键的,并且使用商业软件不容易执行。