Simon P, Lichte H, Formanek P, Lehmann M, Huhle R, Carrillo-Cabrera W, Harscher A, Ehrlich H
Max-Planck-Institut für Chemische Physik fester Stoffe, Nöthnitzer Strasse 40, 01187 Dresden, Germany.
Micron. 2008;39(3):229-56. doi: 10.1016/j.micron.2006.11.012. Epub 2007 Jan 20.
In this paper, we summarise the development of off-axis electron holography on biological samples starting in 1986 with the first results on ferritin from the group of Tonomura. In the middle of the 1990s strong interest was evoked, but then stagnation took place because the results obtained at that stage did not reach the contrast and the resolution achieved by conventional electron microscopy. To date, there exist only a few ( approximately 12) publications on electron holography of biological objects, thus this topic is quite small and concise. The reason for this could be that holography is mostly established in materials science by physicists. Therefore, applications for off-axis holography were powerfully pushed forward in the area of imaging, e.g. electric or magnetic micro- and nanofields. Unstained biological systems investigated by means of off-axis electron holography up to now are ferritin, tobacco mosaic virus, a bacterial flagellum, T5 bacteriophage virus, hexagonal packed intermediate layer of bacteria and the Semliki Forest virus. New results of the authors on collagen fibres and surface layer of bacteria, the so-called S-layer 2D crystal lattice are presented in this review. For the sake of completeness, we will shortly discuss in-line holography of biological samples and off-axis holography of materials related to biological systems, such as biomaterial composites or magnetotactic bacteria.
在本文中,我们总结了离轴电子全息术在生物样品上的发展历程,其始于1986年,当时富田小组首次得到了关于铁蛋白的研究结果。在20世纪90年代中期引发了强烈的兴趣,但随后出现了停滞,因为在那个阶段所获得的结果没有达到传统电子显微镜所实现的对比度和分辨率。迄今为止,关于生物物体电子全息术的出版物仅有少数(约12篇),因此这个主题的规模相当小且内容简洁。其原因可能是全息术大多由物理学家在材料科学领域确立起来。所以,离轴全息术在成像领域(例如电或磁的微观和纳米场)得到了有力的推动。到目前为止,通过离轴电子全息术研究的未染色生物系统有铁蛋白、烟草花叶病毒、细菌鞭毛、T5噬菌体病毒、细菌的六方堆积中间层以及辛德毕斯森林病毒。作者关于胶原纤维和细菌表层(即所谓的S层二维晶格)的新结果在本综述中予以呈现。为求完整,我们将简要讨论生物样品的同轴全息术以及与生物系统相关材料(如生物材料复合材料或趋磁细菌)的离轴全息术。