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Sorting inactivated cells using cell-imprinted polymer thin films

机译:使用细胞印迹聚合物薄膜对失活的细胞进行分选

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Previous work showed that cell imprinting in a poly(dimethylsiloxane) film produced artificial receptors to cells by template-assisted rearrangement of functional groups on the surface of the polymer thin film which facilitated cell capture in the polymer surface indentations by size, shape, and, most importantly, chemical recognition. We report here that inactivation of cells by treatment with formaldehyde (4%), glutaraldehyde (2%), or a combination of the two leads to markedly improved capture selectivity (a factor of 3) when cells to be analyzed are inactivated in the same manner. The enhanced capture efficiency compared to living cells results from two factors: (1) rigidification of the cell surface through cross-linking of amine groups by the aldehyde; and (2) elimination of chemicals excreted from living cells which interfere with the fidelity of the cell-imprinting process. Moreover, cell inactivation has the advantage of removing biohazard risks associated with working with virulent bacteria. These results are demonstrated using different strains of Mycobacterium tuberculosis.
机译:先前的工作表明,在聚二甲基硅氧烷薄膜中的细胞印迹通过模板协助聚合物薄膜表面上官能团的重排产生了对细胞的人工受体,这些官能团有助于按尺寸,形状和(或),最重要的是化学识别。我们在这里报告说,通过将甲醛(4%),戊二醛(2%)或两者结合处理,可以使细胞失活,从而使待分析细胞在同一条件下失活,捕获选择性显着提高(3倍)。方式。与活细胞相比,捕获效率的提高归因于两个因素:(1)通过胺基与醛的交联使细胞表面硬化。 (2)消除从活细胞中排出的化学物质,它们会干扰细胞印迹过程的保真度。此外,细胞失活的优势在于消除了与毒性细菌一起工作所带来的生物危害风险。使用不同的结核分枝杆菌菌株证明了这些结果。

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