Ratushniak A S, Zapara T A, Zharkikh A A, Ratushniak O A
Zh Vyssh Nerv Deiat Im I P Pavlova. 1996 Mar-Apr;46(2):355-62.
Effects of disruption or stabilization of microfilaments or microtubules on formation of neuronal plastic reactions (NPR) were studied in isolated Lymnaea stagnalis neurons. Disruption of these cytoskeletal elements blocked the development of the NPR. After stabilization of the microtubules the dynamics of development and retention of the NPR became dependent on the stimulation series. Stabilization of the microfilaments blocked the development but improved the retention of the NPR. The role of the dynamic cytoskeletal reorganization in the process of NPR formation is discussed on the basis of the obtained data.
在分离的椎实螺神经元中研究了微丝或微管的破坏或稳定对神经元可塑性反应(NPR)形成的影响。这些细胞骨架成分的破坏阻断了NPR的发展。微管稳定后,NPR的发展和保留动态变得依赖于刺激序列。微丝的稳定阻断了NPR的发展,但改善了其保留。基于所获得的数据,讨论了动态细胞骨架重组在NPR形成过程中的作用。