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利用近红外激光微束实现细胞的分离和重定向。

Detachment and reorientation of cells using near-infrared laser microbeam.

机构信息

University of Texas at Arlington, Department of Physics, Arlington, Texas 76019, USA.

出版信息

J Biomed Opt. 2011 Nov;16(11):115002. doi: 10.1117/1.3646207.

Abstract

Reorientation of adhering cell(s) with respect to other cell(s) has not been yet possible, thus limiting study of controlled interaction between cells. Here, we report cell detachment upon irradiation with a focused near-infrared laser beam, and reorientation of adherent cells. The detached cell was transported along the axial direction by scattering force and trapped at a higher plane inside the media using the same laser beam by a gravito-optical trap. The trapped cell could then be repositioned by movement of the sample stage and reoriented by rotation of the astigmatic trapping beam. The height at which the cell was stably held was found to depend on the laser beam power. Viability of the detached and manipulated cell was found not to be compromised as confirmed by propidium iodide fluorescence exclusion assay. The reoriented cell was allowed to reattach to the substrate at a controlled distance and orientation with respect to other cells. Further, the cell was found to retain its shape even after multiple detachments and manipulation using the laser beam. This technique opens up new avenues for noncontact modification of cellular orientations that will enable study of intercellular interactions and design of engineered tissue.

摘要

目前还不可能实现与其他细胞相关的附着细胞的重定向,因此限制了对细胞间受控相互作用的研究。在这里,我们报告了在聚焦近红外激光束照射下的细胞脱离,以及附着细胞的重定向。通过散射力将脱离的细胞沿着轴向输送,并使用相同的激光束在更高的平面内利用重力光学阱将其捕获在介质中。然后可以通过移动样品台来重新定位捕获的细胞,并通过旋转像散捕获光束来重新定向细胞。发现细胞稳定保持的高度取决于激光束功率。通过碘化丙啶荧光排除试验证实,脱离和操作的细胞的活力没有受到损害。将重定向的细胞在受控的距离和相对于其他细胞的方向重新附着到基底上。此外,即使使用激光束进行多次脱离和操作后,细胞也能保持其形状。这项技术为非接触式细胞取向修改开辟了新途径,这将使细胞间相互作用的研究和工程组织的设计成为可能。

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