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玻璃态水的聚焦离子束铣削:冷冻水合生物样品低温超薄切片术的替代方案前景

Focused ion beam milling of vitreous water: prospects for an alternative to cryo-ultramicrotomy of frozen-hydrated biological samples.

作者信息

Marko M, Hsieh C, Moberlychan W, Mannella C A, Frank J

机构信息

Resources for Visualization of Biological Complexity, Wadsworth Center, Empire State Plaza, Albany, NY 12201, USA.

出版信息

J Microsc. 2006 Apr;222(Pt 1):42-7. doi: 10.1111/j.1365-2818.2006.01567.x.

Abstract

The feasibility of using a focused ion beam (FIB) for the purpose of thinning vitreously frozen biological specimens for transmission electron microscopy (TEM) was explored. A concern was whether heat transfer beyond the direct ion interaction layer might devitrify the ice. To test this possibility, we milled vitreously frozen water on a standard TEM grid with a 30-keV Ga(+) beam, and cryo-transferred the grid to a TEM for examination. Following FIB milling of the vitreous ice from a thickness of approximately 1200 nm to 200-150 nm, changes characteristic of heat-induced devitrification were not observed by TEM, in either images or diffraction patterns. Although numerous technical challenges remain, it is anticipated that 'cryo-FIB thinning' of bulk frozen-hydratred material will be capable of producing specimens for TEM cryo-tomography with much greater efficiency than cryo-ultramicrotomy, and without the specimen distortions and handling difficulties of the latter.

摘要

探讨了使用聚焦离子束(FIB)对玻璃化冷冻生物标本进行减薄以用于透射电子显微镜(TEM)的可行性。一个担忧是,直接离子相互作用层之外的热传递是否会使冰失玻璃化。为了测试这种可能性,我们用30 keV的Ga(+)束在标准TEM网格上对玻璃化冷冻的水进行铣削,并将网格低温转移到TEM中进行检查。在用FIB将玻璃态冰从大约1200 nm的厚度减薄到200 - 150 nm之后,通过TEM在图像或衍射图案中均未观察到热诱导失玻璃化的特征变化。尽管仍然存在许多技术挑战,但预计对大量冷冻水合材料进行“低温FIB减薄”将能够比低温超薄切片术更高效地制备用于TEM低温断层扫描的标本,并且不会出现后者的标本变形和处理困难问题。

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