首页> 外文期刊>Journal of cell biology >The cytoplasmic filament system in critical point-dried whole mounts and plastic-embedded sections.
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The cytoplasmic filament system in critical point-dried whole mounts and plastic-embedded sections.

机译:关键点干燥的整个固定架和塑料包埋部分的细胞质细丝系统。

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High voltage electron microscopy of intact cells prepared by the critical point drying (CPD) procedure has become an important tool in the study of three-dimensional relationships between cytoplasmic organelles. It has been claimed that critical point-dried specimens reveal a structure that is not visible in sections of plastic-embedded material; it has also been claimed that this structure, in association with known cytoplasmic filaments, forms a meshwork of tapering threads ("microtrabecular lattice"). Alternatively, this structure might be a surface tension artifact produced during CPD. To test possible sources of artifacts during CPD, model fiber systems of known structure were used. It was found that traces of water or ethanol in the CO2 caused distortions and fusion of fibers in pure muscle actin, fibrin, collagen, chromatin, and microtubules that produce a structure very similar to the proposed "microtrabecular lattice." These structures were, however, well preserved if water and ethanol were totally excluded from the CO2. The same results were obtained with whole mounts of cultured cells. A "microtrabecular lattice" was obtained if some water or ethanol was present in the pressure chamber. On the other hand, when water or ethanol were totally excluded from the CO2 during CPD, cytoplasmic filaments were uniform in thickness similar to their appearance in sections of plastic-embedded cells. It is concluded that the "microtrabecular lattice" is a distorted image of the cytoplasmic filament network produced during CPD by traces of water or ethanol in the CO2.
机译:通过临界点干燥(CPD)程序制备的完整细胞的高压电子显微镜已成为研究细胞质细胞器之间三维关系的重要工具。据称,临界点干燥的样品揭示出一种结构,这种结构在塑料包埋材料的截面中是不可见的。还要求保护的是,这种结构与已知的细胞质细丝一起形成渐细线的网状结构(“微骨小梁”)。或者,此结构可能是CPD期间产生的表面张力伪影。为了测试CPD期间可能的伪影来源,使用了已知结构的模型光纤系统。发现二氧化碳中的水或乙醇的痕迹会导致纯肌肉肌动蛋白,纤维蛋白,胶原蛋白,染色质和微管中纤维的变形和融合,产生的结构与拟议的“微骨小梁”非常相似。但是,如果将水和乙醇完全排除在二氧化碳之外,这些结构将得到很好的保存。整个培养细胞壁都获得了相同的结果。如果压力室中存在一些水或乙醇,则会获得“微小梁晶格”。另一方面,当在CPD期间将水或乙醇从CO2中完全排除时,细胞质细丝的厚度均匀,类似于它们在塑料包埋细胞切片中的外观。结论是“微骨小梁格”是CPD期间由于二氧化碳中的痕量水或乙醇而产生的细胞质细丝网络的扭曲图像。

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