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BIOASSISTED SELECTIVE-CAPTURE AND RELEASE OF NANOPARTICLES TOWARD APPLICATION ON MICROFLUIDIC DEVICES

机译:生物分配选择性捕获和释放纳米颗粒朝向微流体装置的应用

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Peptides with affinity for inorganic materials hold promise for immobilizing functional nanostructures on a solid surface. In this study, a peptide with strict selective affinity for ZnO surfaces was utilized. We functionalized cadmium selenide (CdSe) nanoparticles by conjugating ZnO-binding peptides (ZnOBPs) on the surface of the nanoparticles and performed spontaneous and reversible patterning of ZnOBP-displayed nanoparticles on lithographed ZnO films. Conjugation of ZnOBPs on CdSe nanoparticles caused spontaneous adsorption of the nanoparticles on a ZnO film, and fluorescence and cathodoluminescence images clearly showed specific adsorption of nanoparticles on nano- and micrometer scales. The selectively-bound nanoparticles on ZnO films were completely released by changing the phosphate concentration in solution; such release did not require heat or mechanical applications. Our results show the potential of material-binding peptides for nanopatterning and dynamic microarray applications.
机译:与无机材料的亲和力的肽保持在固体表面上固定化的纳米结构功能承诺。在这项研究中,具有严格的选择性亲和力的肽为氧化锌的表面被利用。我们通过纳米颗粒的表面上的ZnO缀合结合肽(ZnOBPs)官能化硒化镉(硒化镉)纳米粒子和进行上石印ZnO薄膜ZnOBP显示的纳米颗粒的自发的和可逆的图案化。上的CdSe纳米粒子ZnOBPs的缀合导致上的ZnO膜,纳米颗粒的自发吸附,和荧光和阴极发光图像清楚地显示在纳米和微米尺度的纳米颗粒的特异性吸附。对ZnO薄膜的选择性结合的纳米颗粒完全通过改变溶液中的磷酸盐浓度释放;这种释放并不需要加热或机械应用。我们的研究结果显示纳米图形化和动态的芯片应用材料结合肽的潜力。

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