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Optimization of ultrastructural preservation of human brain for transmission electron microscopy after long post-mortem intervals

机译:较长的验尸间隔后用于透射电子显微镜的人脑超微结构保存的优化

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摘要

Electron microscopy (EM) provides the necessary resolution to visualize the finer structures of nervous tissue morphology, which is important to understand healthy and pathological conditions in the brain. However, for the interpretation of the micrographs the tissue preservation is crucial. The quality of the tissue structure is mostly influenced by the post mortem interval (PMI), the time of death until the preservation of the tissue. Therefore, the aim of this study was to optimize the preparation-procedure for the human frontal lobe to preserve the ultrastructure as well as possible despite the long PMIs. Combining chemical pre- and post-fixation with cryo-fixation and cryo-substitution (“hybrid freezing”), it was possible to improve the preservation of the neuronal profiles of human brain samples compared to the “standard” epoxy resin embedding method. In conclusion short PMIs are generally desirable but up to a PMI of 16 h the ultrastructure can be preserved on an acceptable level with a high contrast using the “hybrid freezing” protocol described here.
机译:电子显微镜(EM)提供必要的分辨率以可视化神经组织形态的精细结构,这对于了解大脑的健康和病理状况非常重要。但是,对于显微照片的解释,组织的保存至关重要。组织结构的质量主要受验尸间隔(PMI),直到组织保存的死亡时间的影响。因此,本研究的目的是优化人额叶的制备过程,以保持超长结构,尽管PMI较长。与“标准”环氧树脂包埋法相比,将化学固定前和固定后与冷冻固定和冷冻替代(“混合冷冻”)相结合,可以改善人脑样品神经元特征的保存。总之,通常需要短的PMI,但使用此处所述的“杂交冷冻”方案,可以将PMI保持在16 h以内,并且可以以高对比度将超微结构保持在可接受的水平。

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