抑制内源性大麻素降解酶FAAH和MAGL在斑马鱼胚胎发生过程中改变感觉运动功能。

Lakhan S Khara, Md. Ruhul Amin, D. Ali
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引用次数: 4

摘要

内源性大麻素系统(eCS)在多种体内平衡和发育过程中起着关键作用。虽然已知eCS参与运动和感觉功能,但内源性大麻素(eCB)信号在感觉运动发育中的作用仍有待充分了解。在这项研究中,分解代谢酶脂肪酸酰胺水解酶(FAAH)和单酰基甘油脂肪酶(MAGL)在斑马鱼胚胎发生的最初~ 24小时内被同时或单独抑制,并在受精后1天(dpf)至10周的动物中研究了收缩事件和逃逸反应的特性。eCS的这种扰动导致1 dpf时收缩活动的改变。jzl184对MAGL的抑制和jzl195对FAAH/MAGL的双重抑制降低了2 dpf的逃逸游泳活性。jzl195治疗也能改变2 dpf短潜伏期C-start逃逸反应的特性。用jzl195处理的动物在5和6 dpf时表现出听觉/振动(A/V)刺激引起的逃避反应的缺陷。这些缺陷在幼鱼发育阶段(8-10周龄的鱼)也存在,表明对感觉系统的长期影响。这些发现表明,eCS扰动影响感觉运动功能,并强调了eCB信号在运动和感觉过程发展中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibiting the endocannabinoid degrading enzymes FAAH and MAGL during zebrafish embryogenesis alters sensorimotor function.
The endocannabinoid system (eCS) plays a critical role in a variety of homeostatic and developmental processes. Although the eCS is known to be involved in motor and sensory function, the role of endocannabinoid (eCB) signaling in sensorimotor development remains to be fully understood. In this study, the catabolic enzymes fatty acid amide hydrolase (FAAH), and monoacylglycerol lipase (MAGL) were inhibited either simultaneously, or individually during the first ∼24 hours of zebrafish embryogenesis, and the properties of contractile events and escape responses were studied in animals ranging in age from 1 day post fertilization (dpf) to 10 weeks. This perturbation of the eCS resulted in alterations to contractile activity at 1 dpf. Inhibition of MAGL using JZL 184 and dual inhibition of FAAH/MAGL using JZL 195 decreased escape swimming activity at 2 dpf. Treatment with JZL 195 also produced alterations in the properties of the 2 dpf short latency C-start escape response. Animals treated with JZL 195 exhibited deficits in escape responses elicited by auditory/vibrational (A/V) stimuli at 5 and 6 dpf. These deficits were also present during the juvenile developmental stage (8-10-week-old fish), demonstrating a prolonged impact to sensory systems. These findings demonstrate that eCS perturbation affects sensorimotor function, and underscores the importance of eCB signaling in the development of motor and sensory processes.
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