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Nanometer-scale antibody patterning for directed eosinophil cell immobilization and stimulation

机译:纳米级抗体图案化针刺嗜酸性粒细胞细胞固定和刺激

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Antibodies (Ab) are patterned at nanoscale precision for the precise immobilization and stimulation of immune cells. We demonstrate that the antigen bovine serum albumin (BSA) can be patterned on silicon using a photolithographically patterned polymer lift-off technique. The nanoscale pattern is realized as the polymer is mechanically peeled away in one contiguous piece in aqueous solution. Anti-BSA Ab are bound specifically to BSA to create a pattern of oriented Ah that provides a surface for eosinophil immobilization and degranulation. The patterns ranged from 0.36 μm{sup}2 to 4,489 μm{sup}2, appropriate dimensions for the 10-14 μm. diameter eosinophil cells. This method provides a new technique for immobilizing cells onto nano- and micronmeter scale patterns for analyzing cellular biochemical cascade events such as degranulation and studying cellular morphological changes in response to defined nanoscale antigenic stimulus.
机译:抗体(AB)以纳米级精度图案化,用于精确固定和免疫细胞的刺激。我们证明抗原牛血清白蛋白(BSA)可以使用光刻图案化的聚合物剥离技术在硅上图案化。将纳米级图案实现,因为聚合物在水溶液中的一种连续件中机械地剥离。抗BSA AB专门对BSA结合以产生定向AH的图案,为嗜酸性粒细胞固定化和脱粒提供表面。图案范围为0.36μm{sup} 2至4,489μm{sup} 2,适当的尺寸为10-14μm。直径嗜酸性粒细胞细胞。该方法提供了一种用于将细胞固定到纳米和微量测量级别模式上的新技术,用于分析细胞生化级联事件,例如抗衰老和研究细胞形态学变化,响应于定义的纳米级抗原刺激。

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