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A novel technique for positioning multiple cell types by liquid handling

机译:一种通过液体处理来定位多种细胞类型的新技术

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The spatial control of cells on a surface and the patterning of multiple cell types is an important tool for fundamental biological research and tissue engineering applications. A novel technique is described for the controlled seeding of multiple cell types at specific locations on a surface without requiring the use of specialized equipment or materials. Small-volume, quasi-hemispherical drops of cell solution are deposited onto a cell culture surface immersed under barrier oil, which serves to contain the drop and prevents evaporation of the cell culture medium during the time necessary for cells to attach to the cell culture surface. Subsequent flooding with an aqueous cell-compatible buffer displaces the barrier oil, allowing the cells to grow freely across the surface. This technique offers a simple and easily implemented solution for defining the initial position of cultured cells. The coculture of multiple cell types may be carried out by incorporating different cell types in each drop. A suitable drop volume was found to be 1 μl dispensed with a standard 0.5–10 μl pipette. The drop formed resulted in a footprint diameter of approximately 2 mm. Mineral oil and silicone oil do not compromise the viability of cultured cells when used in this technique. Moreover, a surface with heparin-immobilized FGF2 is shown to retain its bioactivity following drying of the substrate and contact with mineral oil.
机译:表面上细胞的空间控制以及多种细胞类型的图案化是基础生物学研究和组织工程应用的重要工具。描述了一种新颖的技术,用于在表面的特定位置控制多种细胞类型的播种,而无需使用专门的设备或材料。将小体积,准半球形的细胞溶液滴液浸没在浸有隔离油的细胞培养表面上,该油可以抑制液滴并防止细胞在细胞附着到细胞培养表面所需的时间内蒸发细胞培养基。随后用与细胞相容的水性缓冲液驱替了隔离油,从而使细胞在整个表面上自由生长。该技术为定义培养细胞的初始位置提供了一种简单易行的解决方案。可以通过在每个液滴中掺入不同的细胞类型来进行多种细胞类型的共培养。发现用标准的0.5-10μl移液器分配的液滴量为1μl。形成的液滴导致足迹直径约为2 mm。当用于该技术时,矿物油和硅油不会损害培养细胞的生存能力。此外,显示具有肝素固定的FGF2的表面在干燥底物并与矿物油接触后仍保留其生物活性。

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