首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Experimental modification of PC12 neurite shape with the microtubule- depolymerizing drug Nocodazole: a serial electron microscopic study of neurite shape control
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Experimental modification of PC12 neurite shape with the microtubule- depolymerizing drug Nocodazole: a serial electron microscopic study of neurite shape control

机译:微管解聚药物诺考达唑对PC12神经突形状的实验修饰:神经突形状控制的系列电子显微镜研究

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摘要

The microtubule-depolymerizing drug Nocodazole has been used to experimentally manipulate the form of PC12 neurites. Both time-lapse photography and serial electron microscopy demonstrate that microtubule depolymerization leads to varicosity formation due to a clustering of membranous organelles in young neurites (nerve growth factor activated within 7 d). Neurites that have been nerve growth factor activated 7 or more d before Nocodazole application are resistant to microtubule depolymerization. These data and data from previous papers has been combined in an attempt to predict quantitatively the volume and the shape of a neurite. The relationship is described mathematically by Vn = 4.52 Vo + 0.0054 MTl, where Vn is local neurite volume, Vo is organelle volume, and MTl is MT length (the constant, 0.0054 is micron2), and 4.52 is the obligatory volume constant derived from serial electron microscopic studies. The equation predicts the total volume of neurites despite alterations of morphology due to Nocodazole and despite changes in morphology during development.
机译:微管解聚药物诺考达唑已被用于实验控制PC12神经突的形式。延时摄影和连续电子显微镜均表明,由于幼小神经突中膜细胞器的聚集(神经生长因子在7天内激活),微管解聚导致静脉曲张形成。在使用Nocodazole之前7天或更长时间已被神经生长因子激活的神经突对微管解聚具有抵抗力。这些数据和以前的论文中的数据相结合,试图定量预测神经突的体积和形状。 Vn = 4.52 Vo + 0.0054 MTl用数学方式描述该关系,其中Vn是局部神经突体积,Vo是细胞器体积,MT1是MT长度(常数,0.0054是micron2),而4.52是从序列导出的强制性体积常数。电子显微镜研究。该方程式可预测神经突的总体积,尽管由于诺考达唑导致形态发生了变化,并且尽管在发育过程中形态发生了变化。

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