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Intracellular control of axial shape in non-uniform neurites: a serial electron microscopic analysis of organelles and microtubules in AI and AII retinal amacrine neurites

机译:非均匀神经突的轴向形状的细胞内控制:AI和AII视网膜无长突神经突中细胞器和微管的连续电子显微镜分析

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摘要

AI and AII cat retinal amacrine cells have highly varicose non-uniform, neuritic processes. Processes of both types were reconstructed via a computer system using serial electron micrographs. These reconstructions were analyzed for (a) varicosity volume, surface area, and length, (b) "neck" volume, surface area, and length, (c) number of microtubules within the varicosity, (d) number of microtubules within the "neck," and (e) volume and surface area of mitochondria and smooth endoplasmic reticulum and large smooth vesicular bodies within the processes. Correlation of these parameters revealed a linear relationship between the number of microtubules in the necks and mean neck cross-sectional area (rs = 0.780, P less than 0.001), while microtubule number within the varicosities showed no correlation with varicosity volume (rs = 0.239, P greater than 0.2). Varicosity volume did, however, correlate strongly with the summed volume of mitochondria and smooth vesicular bodies contained within the varicosity for both cell types examined. The ratio between membranous organelle volume and varicosity volume for AI amacrine processes of 1:6.97 (rs = 0.927), differed from the ratio of 1:1.80 for the AII amacrine processes (rs = 0.987). Similar relationships were observed in other nonvaricose neurites such as optic tract axons. Membranous organelles appear to contribute an additional obligatory volume to the cytosol that can be as much as seven times the organelles' direct volume. These observations suggest that both the cytoskeletal components, and the membrane organelles play a direct role in determining neurite shape.
机译:AI和AII猫的视网膜无长突细胞具有高度曲张的不均匀,神经炎过程。两种类型的工艺均通过计算机系统使用系列电子显微照片重建。分析了这些重建物的(a)静脉曲张体积,表面积和长度,(b)“颈部”体积,表面积和长度,(c)静脉曲张内的微管数量,(d)静脉内的微管数量。颈”,以及(e)进程中线粒体和平滑的内质网以及大的光滑囊泡体的体积和表面积。这些参数的相关性揭示了颈部微管数量与平均颈部横截面积之间的线性关系(rs = 0.780,P小于0.001),而在静脉曲张内的微管数量与静脉曲张量没有相关性(rs = 0.239) ,P大于0.2)。但是,对于两种检查的细胞类型,曲张性容积确实与包含在曲张性中的线粒体和平滑囊泡体的总体积紧密相关。 AI无长突的膜细胞器容积与静脉曲张容积之比为1:6.97(rs = 0.927),与AII无长突的膜细胞器容积与静脉曲张容积之比为1:1.80(rs = 0.987)。在其他非曲张神经突,例如视神经轴突中也观察到类似的关系。膜细胞器似乎为细胞质贡献了额外的强制性体积,其可能是细胞器直接体积的七倍。这些观察结果表明,细胞骨架成分和膜细胞器都在确定神经突形状中起直接作用。

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