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正常生长条件下贴壁依赖性细胞的自动化分析与存活选择

Automated analysis and survival selection of anchorage-dependent cells under normal growth conditions.

作者信息

Schindler M, Allen M L, Olinger M R, Holland J F

出版信息

Cytometry. 1985 Jul;6(4):368-74. doi: 10.1002/cyto.990060415.

Abstract

An instrument is described that can automatically analyze and select for a subpopulation of anchorage-dependent cells in tissue culture. Cells that label with fluorescently tagged antibodies or demonstrate structural variations are saved from exposure to a destructive high-intensity argon laser beam. The surviving population may then be cloned. The cell selection may occur in a tissue culture plate or in a microflow incubator which is designed to maintain a constant flow of media at 37 degrees C across cells growing on a glass coverslip. This incubator sits on an inverted microscope which focuses the laser beam to a diameter as small as 1 micron. A high-speed computer-controlled two-dimensional stage moves the cells past the beam for analysis, the results of which determine the fate of each cell: whether it is to be destroyed by radiant energy or selected for survival and subsequent proliferation. Another selection strategy performed by the instrument involves growing the cells on a thin, blackened polyester film which can be cut by the argon laser beam. Cells selected for cloning are then circumscribed. The heat of cutting welds the circumscribed film to a plastic coverslip surface or tissue culture chamber bottom. Nonselected cells may be removed by pulling the unattached polyester sheet from the attachment surface. The selected cells remain on polyester film disks welded to the plastic. Selections may be done automatically under computer control or manually by operator direction of stage movements. This instrument extends the art of automated cell selection and analysis to normal cell lines that must maintain cell-substratum contact (anchorage dependence) for differentiated cell function, e.g., neurons, fibroblasts, or kidney cells.

摘要

本文描述了一种仪器,它能够在组织培养中自动分析并筛选出贴壁依赖细胞的亚群。用荧光标记抗体标记或显示出结构变异的细胞,可避免暴露于高强度氩激光束的破坏作用之下。然后可对存活的细胞群体进行克隆。细胞筛选可在组织培养板中进行,也可在微流培养箱中进行,该培养箱旨在使培养基在37℃下以恒定流速流过生长在玻璃盖玻片上的细胞。该培养箱置于倒置显微镜上,显微镜将激光束聚焦至直径小至1微米。高速计算机控制的二维载物台将细胞移至激光束前进行分析,分析结果决定每个细胞的命运:是被辐射能破坏,还是被筛选出来存活并随后增殖。该仪器执行的另一种筛选策略是,让细胞在可被氩激光束切割的黑色薄聚酯膜上生长。然后将被选中用于克隆的细胞圈出。切割产生的热量将圈出的薄膜焊接到塑料盖玻片表面或组织培养室底部。未被选中的细胞可通过将未附着的聚酯片从附着表面上拉开而去除。被选中的细胞留在焊接到塑料上的聚酯膜圆盘上。筛选可在计算机控制下自动进行,也可由操作员手动指挥载物台移动来完成。该仪器将自动细胞筛选和分析技术扩展到了正常细胞系,这些细胞系必须保持细胞与基质的接触(贴壁依赖性)才能实现分化细胞功能,例如神经元、成纤维细胞或肾细胞。

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