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Optimal Experimental Design for Efficient Optical Manipulation of Magnetic Beads Seeded in a Microwell Array

机译:微孔阵列中播种磁珠高效光学操纵的最佳实验设计

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Problem: In the field of genomics, proteomics and disease diagnostics, it is of great interest to capture individual targets (e.g., cells, bacteria, exosomes) on magnetic beads and to seed them in a microwell array. Optical manipulation of the magnetic beads in the array then allows selecting the targets of interest and moving them to another location for post analysis. However, this technology is hampered by the low fraction of beads that show Brownian motion within their microwell and thus can be optically trapped and manipulated. This is due to the fact that magnetic beads seeded in a microwell array are subject to attraction forces that cause them to adhere to the microwell surfaces. The challenge is to identify buffer conditions that prevent this from happening.
机译:问题:在基因组学,蛋白质组学和疾病诊断领域,捕获磁珠上的个体靶标(例如,细胞,细菌,外来)具有很大的兴趣,并在微孔阵列中播种它们。 阵列中的磁珠的光学操纵,然后允许选择感兴趣的目标并将它们移动到另一个位置进行分析。 然而,这种技术受到在微孔内显示布朗运动的低珠子的阻碍,因此可以光学捕获和操纵。 这是由于微孔阵列中播种的磁珠受到引起它们粘附到微孔表面的吸引力的事实。 挑战是识别防止这种情况发生的缓冲条件。

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