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Electric manipulation of bioparticles and macromolecules onmicrofabricated electrodes

机译:微型电极上的生物粒子和高分子的电操纵

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Bioparticle separation, bioparticle enrichment, and electric field-mediated immune detection were carried out on microfabricated semiconductor chips utilizing ac and dc electric fields. Microscale separation on a chip surface having an active area of similar to 16 mm(2) was demonstrated for a mixture of Bacillus globigii spores and Escherichia coli bacteria. Dielectrophoretic enrichment was performed by collecting target bioparticles from a now stream in now cells of similar to7.5 muL, achieving a 20-fold increase in the concentration of E. coli bacteria from a diluted sample, a 28-fold enrichment for peripheral blood mononuclear cells from red blood cells, and a 30-fold increase in white blood cells from diluted whole blood. The ability to manipulate and collect bioparticles and macromolecules at microfabricated electrodes with ac and dc fields was further illustrated in electric held-mediated immunoassays for analyzing the biological identities of E, coli bacteria and B. globigii spores. According to these results, the electric methods for manipulating bioparticles present themselves as viable techniques for novel biomedical applications in sample preparations and biochemical assays on microelectrode arrays.
机译:生物微粒分离,生物微粒富集和电场介导的免疫检测是在利用交流和直流电场的微型半导体芯片上进行的。对于球形芽孢杆菌孢子和大肠埃希氏菌细菌的混合物,具有有效面积类似于16 mm(2)的芯片表面上的微型分离已得到证明。通过从现在的流中收集大约7.5μL的now细胞中的目标生物颗粒来进行介电泳富集,从而使稀释样品中的大肠杆菌浓度增加了20倍,而外周血单核的富集了28倍红血球中的血红细胞,而稀释的全血中白血球则增加了30倍。在具有交流和直流场的微型电极上操纵和收集生物颗粒和大分子的能力在电保持介导的免疫分析中进一步得到了证明,该分析用于分析大肠杆菌,细菌和球孢双歧杆菌的生物学特性。根据这些结果,操纵生物粒子的电方法本身是可行的技术,可用于样品制备和微电极阵列上的生化测定中的新型生物医学应用。

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