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High accuracy indirect optical manipulation of live cells with functionalized microtools

机译:使用功能化的微型工具对活细胞进行高精度间接光学操作

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摘要

Optical micro manipulation of live cells has been extensively used to study a wide range of cellular phenomena with relevance in basic research or in diagnostics. The approaches span from manipulation of many cells for high throughput measurement or sorting, to more elaborated studies of intracellular events on trapped single cells when coupled with modern imaging techniques. In case of direct cell trapping the damaging effects of light-cell interaction must be minimized, for instance with the choice of proper laser wavelength. Microbeads have already been used for trapping cells indirectly thereby reducing the irradiation damage and increasing trapping efficiency with their high refractive index contrast. We show here that such intermediate objects can be tailor-made for indirect cell trapping to further increase cell-to-focal spot distance while maintaining their free and fast maneuverability. Carefully designed structures were produced with two-photon polymerization with shapes optimized for effective manipulation and cell attachment. Functionalization of the microstructures is also presented that enables cell attachment to them within a few seconds with strength much higher that the optical forces. Fast cell actuation in 6 degrees of freedom is demonstrated with the outlook to possible applications in cell imaging.
机译:活细胞的光学微操作已广泛用于研究与基础研究或诊断相关的各种细胞现象。这些方法从操纵许多细胞以进行高通量测量或分类,到结合现代成像技术对被捕获的单个细胞的细胞内事件进行更详尽的研究。在直接细胞捕获的情况下,必须最小化光细胞相互作用的破坏作用,例如选择适当的激光波长。微珠已经被用于间接捕获细胞,从而以其高折射率对比度降低了辐射损伤并提高了捕获效率。我们在这里展示了可以为间接细胞捕获量身定制这样的中间对象,以进一步增加细胞到焦点的距离,同时保持其自由和快速的可操作性。精心设计的结构是通过双光子聚合生产的,其形状针对有效操纵和细胞附着进行了优化。还提出了微结构的功能化,该功能使细胞能够在几秒钟内附着到其上,其强度远高于光学力。在细胞成像中可能的应用前景证明了6自由度的快速细胞致动。

著录项

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

    Biological research Centre of the Hungarian Academy of Sciences, Institute of Biophysics, Temesvari krt. 62, Szeged, Hungary, H-6726 ,NANOTEC-CNR Istituto di Nanotecnologia, Dipartimento di Fisica, Universita di Roma 'La Sapienza', p. le A. Moro, 2, 00185 Roma, Italy;

    Biological research Centre of the Hungarian Academy of Sciences, Institute of Biophysics, Temesvari krt. 62, Szeged, Hungary, H-6726 ,Center for Soft and Living Matter, Ulsan National Institute of Science and Technology, 50 UNIST-gill, Ulju-gun, Ulsan 44919, Republic of Korea (South Korea);

    Biological research Centre of the Hungarian Academy of Sciences, Institute of Biophysics, Temesvari krt. 62, Szeged, Hungary, H-6726;

    Biological research Centre of the Hungarian Academy of Sciences, Institute of Biophysics, Temesvari krt. 62, Szeged, Hungary, H-6726;

    Biological research Centre of the Hungarian Academy of Sciences, Institute of Biophysics, Temesvari krt. 62, Szeged, Hungary, H-6726;

    Biological research Centre of the Hungarian Academy of Sciences, Institute of Biophysics, Temesvari krt. 62, Szeged, Hungary, H-6726;

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

    two-photon polymerization; optical micromanipulation; single cell trapping; fluorescence microscopy; holographic optical tweezers; functionalization;

    机译:双光子聚合;光学显微操作;单细胞捕获;荧光显微镜全息光镊;功能化;

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