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Probe microscopy methods and applications in imaging of biological materials

机译:生物材料成像的探针显微镜方法和应用

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Atomic force microscopy is an emerging tool for investigating the biomolecular aspects of cellular interactions; however, cell and tissue analyses must frequently be performed in aqueous environment, over rough surfaces, and on complex adhesive samples that complicate the imaging process and readily facilitate the blunting or fouling of the AFM probe. In addition, the shape and surface chemistry of the probe determine the quality and types of data that can be acquired from biological materials, with certain information becoming available only within a specific range of tip lengths or diameters, or through the assistance of specific chemical or biological functionalization procedures. Consequently, a broad range of probe modification techniques has been developed to extend the capabilities and overcome the limitations of biological AFM measurements, including the fabrication of AFM tips with specialized morphologies, surface coating with biologically affine molecules, and the attachment of proteins, nucleic acids and cells to AFM probes. In this review, we underline the importance of probe choice and modification for the AFM analysis of biomaterials, discuss the recent literature on the use of non-standard AFM tips in life sciences research, and consider the future utility of tip functionalization methods for the investigation of fundamental cell and tissue interactions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:原子力显微镜是用于研究细胞相互作用的生物分子方面的新兴工具;然而,细胞和组织分析必须经常在粗糙的表面上在粗糙表面中进行,并且在复杂的成像过程中复杂化并且容易促进AFM探针的钻孔或污垢的复​​杂粘合剂样品中进行。另外,探针的形状和表面化学确定可以从生物材料获取的数据的质量和类型,并且在特定的尖端长度或直径范围内或通过特定化学的辅助或者生物官能化程序。因此,已经开发了广泛的探测改性技术以延长能力并克服生物AFM测量的局限性,包括用专用形态,具有生物学染色分子的表面涂层的AFM提示,以及蛋白质,核酸的附着物的制造和细胞到AFM探针。在本文中,我们强调了探针选择和修改的生物材料AFM分析的重要性,讨论了最近关于在生命科学研究中使用非标准AFM提示的文献,并考虑了尖端功能化方法对调查的未来效用基本细胞和组织相互作用。 (c)2017 Elsevier Ltd.保留所有权利。

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