Žužek Monika Cecilija, Grandič Marjana, Benoit Evelyne, Frangež Robert
Institute of Preclinical Sciences, Veterinary Faculty, University of Ljubljana, Gerbičeva 60, 1000 Ljubljana, Slovenia.
Institute of Food Safety, Feed and Environment, Department of Environment, Animal Nutrition, Welfare and Hygiene, Veterinary Faculty, Universitiy of Ljubljana, Cesta v Mestni log 47, 1000 Ljubljana, Slovenia.
Toxicol Lett. 2017 Nov 5;281:95-101. doi: 10.1016/j.toxlet.2017.09.007. Epub 2017 Sep 20.
The effects of natural polymeric alkylpyridinium salt (nPoly-3-APS), a potent acetylcholinesterase inhibitor isolated from the marine sponge Reniera sarai, were studied on isolated mouse phrenic nerve-hemidiaphragm muscle preparations using electrophysiological approaches. nPoly-3-APS inhibited nerve-evoked isometric muscle twitch and tetanic contraction in a concentration-dependent manner (IC=29.4μM and 18.5μM, respectively) and produced a 30-44% decrease of directly muscle-elicited twitch and tetanus amplitudes at 54.4μM. Additionally, nPoly-3-APS (9.1-27.2μM) markedly decreased the amplitude of miniature endplate potentials, while their frequency was only affected at the highest concentration used. Endplate potentials were also inhibited by nPoly-3-APS in a concentration-dependent manner (IC=20.1μM), without significant change in the resting membrane potential of muscle fibers (up to 54.4μM). In conclusion, our results show, for the first time, that nPoly-3-APS preferentially blocks the neuromuscular transmission, in vitro, by a non-depolarizing mechanism. This strongly suggests that the in vivo toxicity of nPoly-3-APS mainly occurs through an antagonist action of the compound on nicotinic acetylcholine receptors of skeletal muscles.
从海洋海绵雷氏拟海牛中分离出的一种强效乙酰胆碱酯酶抑制剂——天然聚合烷基吡啶鎓盐(nPoly-3-APS),采用电生理方法,在离体小鼠膈神经-半膈肌标本上研究了其作用效果。nPoly-3-APS以浓度依赖性方式抑制神经诱发的等长肌肉抽搐和强直收缩(IC分别为29.4μM和18.5μM),在54.4μM时使直接肌肉诱发的抽搐和强直收缩幅度降低30%-44%。此外,nPoly-3-APS(9.1-27.2μM)显著降低微小终板电位的幅度,而其频率仅在所用最高浓度时受到影响。nPoly-3-APS也以浓度依赖性方式抑制终板电位(IC为20.1μM),而肌肉纤维的静息膜电位无显著变化(高达54.4μM)。总之,我们的结果首次表明,nPoly-3-APS在体外通过非去极化机制优先阻断神经肌肉传递。这强烈表明,nPoly-3-APS的体内毒性主要通过该化合物对骨骼肌烟碱型乙酰胆碱受体的拮抗作用发生。