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极化分泌上皮细胞中细胞器空间排列的定量描述:唾液腺腺泡细胞

Quantitative description of the spatial arrangement of organelles in a polarised secretory epithelial cell: the salivary gland acinar cell.

作者信息

Mayhew T M

机构信息

School of Biomedical Sciences, University of Nottingham, UK.

出版信息

J Anat. 1999 Feb;194 ( Pt 2)(Pt 2):279-85. doi: 10.1046/j.1469-7580.1999.19420279.x.

Abstract

Previous quantitative descriptions of cellular ultrastructure have focused on spatial content (volume, surface area and number of organelles and membrane domains). It is possible to complement such descriptions by also quantifying spatial arrangements. Hitherto, applications of stereological methods for achieving this (notably, estimation of covariance and pair correlation functions) have been confined to organ and tissue levels. This study explores 3-dimensional subcellular arrangements of key organelles within acinar cells of rabbit parotid salivary glands, highly polarised epithelial cells specialised for exocrine secretion of alpha-amylase. It focuses on spatial arrangements of secretion product stores (zymogen granules), rough endoplasmic reticulum (RER) and mitochondria. Systematic random samples of electron microscopical fields of view from 3 rabbits were analysed using test grids bearing linear dipole probes of different sizes. Unbiased estimates of organelle volume densities were obtained by point counting and estimates of covariance and pair correlation functions by dipole counting. Plots of pair correlation functions against dipole length identified spatial arrangement differences between organelle types. Volumes within RER and mitochondrial compartments were positively correlated with themselves at distances below 4 microm and 2 microm respectively but were essentially randomly arranged at longer distances. In sharp contrast, zymogen granules were not randomly arranged. They were clustered at distances below 6-7 microm and more widely scattered at greater distances. These findings provide quantitative confirmation of the polarised arrangement of zymogen granules within acinar cells and further support for the relative invariance of biological organisation between subjects.

摘要

以往对细胞超微结构的定量描述主要集中在空间内容(体积、表面积以及细胞器和膜结构域的数量)上。通过对空间排列进行量化,也可以对这些描述进行补充。迄今为止,用于实现这一目标的体视学方法(尤其是协方差和对相关函数的估计)的应用仅限于器官和组织层面。本研究探索了兔腮腺腺泡细胞(专门用于外分泌α-淀粉酶的高度极化上皮细胞)内关键细胞器的三维亚细胞排列。它聚焦于分泌产物储存器(酶原颗粒)、粗面内质网(RER)和线粒体的空间排列。使用带有不同大小线性偶极探针的测试网格,对来自3只兔子的电子显微镜视野的系统随机样本进行了分析。通过点计数获得细胞器体积密度的无偏估计,并通过偶极计数获得协方差和对相关函数的估计。将对相关函数与偶极长度作图,确定了细胞器类型之间的空间排列差异。RER和线粒体区室内的体积在分别低于4微米和2微米的距离处与自身呈正相关,但在更长距离处基本呈随机排列。形成鲜明对比的是,酶原颗粒并非随机排列。它们在低于6 - 7微米的距离处聚集,在更大距离处分布更广泛。这些发现为腺泡细胞内酶原颗粒的极化排列提供了定量证实,并进一步支持了不同个体间生物组织的相对不变性。

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