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Tissue section AFM: In situ ultrastructural imaging of native biomolecules

机译:组织切片AFM:天然生物分子的原位超微结构成像

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摘要

Conventional approaches for ultrastructural high-resolution imaging of biological specimens induce profound changes in bio-molecular structures. By combining tissue cryo-sectioning with non-destructive atomic force microscopy (AFM) imaging we have developed a methodology that may be applied by the non-specialist to both preserve and visualize bio-molecular structures (in particular extracellular matrix assemblies) in situ. This tissue section AFM technique is capable of: i) resolving nm–µm scale features of intra- and extracellular structures in tissue cryo-sections; ii) imaging the same tissue region before and after experimental interventions; iii) combining ultrastructural imaging with complimentary microscopical and micromechanical methods. Here, we employ this technique to: i) visualize the macro-molecular structures of unstained and unfixed fibrillar collagens (in skin, cartilage and intervertebral disc), elastic fibres (in aorta and lung), desmosomes (in nasal epithelium) and mitochondria (in heart); ii) quantify the ultrastructural effects of sequential collagenase digestion on a single elastic fibre; iii) correlate optical (auto fluorescent) with ultrastructural (AFM) images of aortic elastic lamellae.
机译:生物标本的超结构高分辨率成像的常规方法会引起生物分子结构的深刻变化。通过将组织冷冻切片与无损原子力显微镜(AFM)成像相结合,我们开发了一种方法,非专业人员可以应用该方法原位保存和可视化生物分子结构(特别是细胞外基质组件)。这种组织切片AFM技术能够:i)解决组织冷冻切片中细胞内和细胞外结构的nm–µm尺度特征; ii)在实验干预前后对相同的组织区域进行成像; iii)将超微结构成像与互补的微观和微观机械方法相结合。在这里,我们采用这种技术来:i)可视化未染色和未固定的原纤维胶原蛋白(在皮肤,软骨和椎间盘中),弹性纤维(在主动脉和肺中),桥粒(在鼻上皮中)和线粒体的大分子结构(在心里); ii)量化顺序胶原酶消化对单根弹性纤维的超微结构影响; iii)将光学(自发荧光)与主动脉弹性片的超​​微结构(AFM)图像相关联。

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