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通过快速冷冻保存内耳组织:通过高压冷冻和混合方法改善固定效果。

Inner ear tissue preservation by rapid freezing: improving fixation by high-pressure freezing and hybrid methods.

作者信息

Bullen A, Taylor R R, Kachar B, Moores C, Fleck R A, Forge A

机构信息

Centre for Auditory Research, UCL Ear Institute, London WC1X 8EE, UK.

Centre for Auditory Research, UCL Ear Institute, London WC1X 8EE, UK.

出版信息

Hear Res. 2014 Sep;315:49-60. doi: 10.1016/j.heares.2014.06.006. Epub 2014 Jul 10.

Abstract

In the preservation of tissues in as 'close to life' state as possible, rapid freeze fixation has many benefits over conventional chemical fixation. One technique by which rapid freeze-fixation can be achieved, high pressure freezing (HPF), has been shown to enable ice crystal artefact-free freezing and tissue preservation to greater depths (more than 40 μm) than other quick-freezing methods. Despite increasingly becoming routine in electron microscopy, the use of HPF for the fixation of inner ear tissue has been limited. Assessment of the quality of preservation showed routine HPF techniques were suitable for preparation of inner ear tissues in a variety of species. Good preservation throughout the depth of sensory epithelia was achievable. Comparison to chemically fixed tissue indicated that fresh frozen preparations exhibited overall superior structural preservation of cells. However, HPF fixation caused characteristic artefacts in stereocilia that suggested poor quality freezing of the actin bundles. The hybrid technique of pre-fixation and high pressure freezing was shown to produce cellular preservation throughout the tissue, similar to that seen in HPF alone. Pre-fixation HPF produced consistent high quality preservation of stereociliary actin bundles. Optimising the preparation of samples with minimal artefact formation allows analysis of the links between ultrastructure and function in inner ear tissues.

摘要

在将组织尽可能保持在“接近生命”状态的保存过程中,快速冷冻固定相较于传统化学固定具有诸多优势。一种可实现快速冷冻固定的技术——高压冷冻(HPF),已被证明能够实现无冰晶伪像的冷冻,并能比其他快速冷冻方法保存更深层的组织(超过40μm)。尽管在电子显微镜检查中HPF越来越成为常规操作,但HPF在内耳组织固定中的应用一直有限。对保存质量的评估表明,常规HPF技术适用于多种物种内耳组织的制备。在感觉上皮的整个深度都能实现良好的保存。与化学固定组织的比较表明,新鲜冷冻制剂在细胞结构保存方面总体表现更优。然而,HPF固定在静纤毛中产生了特征性伪像,这表明肌动蛋白束的冷冻质量较差。预固定和高压冷冻的混合技术显示,能在整个组织中实现细胞保存,类似于单独使用HPF时的情况。预固定HPF能始终如一地高质量保存静纤毛肌动蛋白束。优化样品制备以尽量减少伪像形成,有助于分析内耳组织超微结构与功能之间的联系。

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