结构和细胞存活研究中大鼠背根神经节细胞数目和大小的无偏估计。

Trine Tandrup
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引用次数: 59

摘要

对于实验模型大鼠背根神经节(DRG)的定量研究,立体学原理提供了许多不同的技术。然而,这种应用需要神经节的解剖学和细胞学知识,需要考虑采样和在许多可用的估计器之间进行选择。对于厚的甲基丙烯酸乙酯切片的数量和体积估计,光学分馏器和垂直平面旋转器技术在大多数情况下提供足够的效率和简单的使用。在实验条件下,将DRG中的神经元分为A细胞和b细胞是有价值的,因为这两种细胞类型可以产生不同的反应。应用立体学方法对神经元DRG细胞的发育和亚分类进行研究。到目前为止,该方法主要应用于肛门切开术和一些中毒模型的研究,其中细胞损失的时间过程和核周体积的变化是重要的参数。进一步的定量研究可以更好地了解神经肽、细胞因子、凋亡分子等的分布和表达,为神经退行性疾病的未来治疗方法提供见解。更苛刻的染色技术需要较少限制的嵌入介质,但无偏的原则适用于几乎所有的体视学技术,仅用于切片后变形的组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unbiased estimates of number and size of rat dorsal root ganglion cells in studies of structure and cell survival.

For quantitative studies of rat dorsal root ganglion (DRG) in experimental models stereological principles offer a number of different techniques. The application, however, requires knowledge of the anatomy and cytology of the ganglion, considerations of sampling and choosing between the many estimators available. For number and volume estimates in thick glycolmethacrylate sections the optical fractionator and the vertical planar rotator technique in most cases provide sufficient efficiency and are simple to use. Classification of the neurons in the DRG into A- and B-cells is of value in experimental conditions where the two cell types can react differently. Studies on development and subclassification of neuronal DRG cells will gain from application of stereological methods, also. Until now the methods have mainly been applied in studies of axotomy and in a few intoxication models where the time course of cell loss and changes in perikarya volume are important parameters. Further quantitative studies providing better understanding of distribution and expression of neuropeptides, cytokines, apoptotic molecules etc. will provide insight for future therapeutic approaches in neurodegenerative disorders. The more demanding staining techniques require less restrictive embedding media, but unbiased principles are available for almost all the stereological techniques applied to tissue only deformed after sectioning.

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