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Perspectives in nanostructure assisted laser manipulation of mammalian cells

机译:纳米结构辅助激光操纵哺乳动物细胞的观点

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摘要

The interaction of cell-adhered nanostructures with laser light has attracted much interest within the biomedical field. Molecular delivery using a variety of plasmonic nanostructures, such as structured surfaces, nanoparticles and particle clusters, is currently evolving from its proof-of-concept into a routine method. Here, gold represents the material of choice, as it provides unique optical properties, different surface modifications as well as biocompatibility. In addition, new materials (e.g. polypyrrole) provide interesting alternatives. Applying this approach, a variety of molecules, such as fluorescent dyes, proteins, antisense structures, and DNA, has been transfected in order to manipulate the cellular functions in different experimental settings. Antisense structures, for example, allow the efficient down regulation of the gene activity of a target, providing insights into the gene's function. The delivery of proteins, as executing molecules in the cell, can exhibit an immediate effect on the cell behavior, allowing a minute observation of the intracellular kinetics. Direct cell manipulation can be achieved with this approach as well. Increasing the nanoparticle concentration and/or the radiant exposure, effective cell destruction is induced. Using targeted nanoparticles (e.g. by antibody conjugation) in combination with spatially selective laser irradiation permits well-directed cell manipulation even in mixed cultures and potentially in tissues. Furthermore, excited gold nanoparticles can directly trigger cellular reactions, which can possibly be utilized for cell stimulation. The manifold possibilities of nanostructure assisted laser manipulation are still in development.
机译:细胞粘附的纳米结构与激光的相互作用已经在生物医学领域引起了极大的兴趣。使用各种等离子体纳米结构(例如结构化表面,纳米粒子和粒子簇)的分子递送目前正从其概念验证发展为常规方法。在这里,金代表了选择的材料,因为它提供了独特的光学特性,不同的表面改性以及生物相容性。此外,新材料(例如聚吡咯)提供了有趣的替代方法。应用这种方法,已经转染了多种分子,例如荧光染料,蛋白质,反义结构和DNA,以便在不同的实验环境中操纵细胞功能。例如,反义结构可有效下调靶基因的活性,从而洞悉基因的功能。作为细胞中执行分子的蛋白质的递送可以对细胞行为表现出立即的影响,从而可以细微观察细胞内动力学。直接细胞操纵也可以用这种方法实现。增加纳米粒子浓度和/或辐射暴露,诱导有效的细胞破坏。将靶向的纳米颗粒(例如通过抗体缀合)与空间选择性激光照射结合使用,即使在混合培养物中以及潜在地在组织中也可以进行定向良好的细胞操作。此外,激发的金纳米颗粒可以直接触发细胞反应,可能将其用于细胞刺激。纳米结构辅助激光操纵的多种可能性仍在开发中。

著录项

  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany;

    Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany;

    Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany;

    Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany;

    Division of Medicine Clinic Ⅲ, Hematology, Oncology and Palliative Medicine, University of Rostock, Ernst-Heydemann-Str. 6, 18057 Rostock, Germany;

    Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany;

    Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser transfection; nanostructures; plasmonics; antisense;

    机译:激光转染;纳米结构等离子体反义;
  • 入库时间 2022-08-26 13:44:53

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