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Progress in the direct structural characterization of fibrous amphiphilic supramolecular assemblies in solution by transmission electron microscopic techniques

机译:透射电镜技术在溶液中纤维两亲超分子组装体的直接结构表征研究进展

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摘要

The self-assembly ofamphiphilicmolecules into fibrous structures has been the subject of numerous studies over past decades due to various current and promising technical applications. Although very different in their head group chemistry many natural as well as synthetic amphiphilic compounds derived from carbohydrates, carbocyanine dyes, or amino acids tend to formfibrous structures bymolecular self-assembly in water predominantly twisted ribbons or tubes. Often a transition between these assembly structures is observed, which is a phenomenon already theoretically approached by Wolfgang Helfrich and still focus point in current research. With the development of suitable sample preparation and electron optical imaging techniques, cryogenic transmission electronmicroscopy (cryo-TEM) in combinationwith three-dimensional (3D) reconstruction techniques has become a particular popular direct characterization technique for supramolecular assemblies in general. Here we review the recent progress in deriving precise structural information from cryo-TEM data of particularly fibrous structures preferably in three dimensions.
机译:由于各种当前和有希望的技术应用,在过去的几十年中,两亲性分子自组装成纤维结构一直是众多研究的主题。尽管它们的头基化学性质非常不同,但许多衍生自碳水化合物,碳花青染料或氨基酸的天然和合成两亲化合物都倾向于通过分子自组装在水中形成纤维结构,主要是扭曲的带或管。通常会观察到这些装配结构之间的过渡,这是Wolfgang Helfrich从理论上已经解决的现象,并且仍然是当前研究的重点。随着合适的样品制备和电子光学成像技术的发展,低温透射电子显微镜(cryo-TEM)与三维(3D)重建技术的结合已普遍成为超分子组装的一种特别流行的直接表征技术。在这里,我们回顾了最近的进展,尤其是从三维结构的纤维结构的冷冻TEM数据中获得精确的结构信息。

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