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Semiconductor Quantum Dot-Labeled Microsphere Bioconjugates Prepared by Stepwise Self-Assembly

机译:逐步自组装制备的半导体量子点标记微球生物共轭物

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Biologically active semiconductor quantum dot (QD)-labeled polystyrene (PS) beads with tailored QD loading and luminescence have been prepared via the layer-by-layer (LbL) assembly approach. PS beads of 925 nm diameter were used as templates for the deposition of CdTe nanocrystal/polyelectrolyte (PE) multilayers, formed via electrostatic interactions, followed by an outermost layer of anti-immunoglobulin G (anti-lgG) to render the particles biospecific. The beads formed were characterized by transmission electron microscopy (TEM) as well as absorption and luminescence spectroscopy. TEM demonstrated the formation of a uniform coating on the PS beads, while the optical spectra confirmed the deposition of CdTe nanocrystals with each CdTe QD/PE coating cycle, and the deposition of fluorescently labeled anti-lgG. The beads were shown to be immunologically active through agglutination assays with the biospecific partner IgG, leading to the formation of bead aggregates and increased light scattering of the dispersions. Utilization of the LbL assembly method to prepare QD-tagged beads with increased complexity (e.g., several types of QDs and multiple biofunctionality) is expected to open new opportunities in a range of biotechnological applications where designer particles are required.
机译:已通过逐层(LbL)组装方法制备了具有定制QD负载和发光的生物活性半导体量子点(QD)标记的聚苯乙烯(PS)珠。直径为925 nm的PS珠用作模板,用于沉积CdTe纳米晶体/聚电解质(PE)多层膜,该多层膜是通过静电相互作用形成的,然后是最外层的抗免疫球蛋白G(anti-IgG),以使颗粒具有生物特异性。通过透射电子显微镜(TEM)以及吸收和发光光谱对形成的珠子进行表征。 TEM证明在PS磁珠上形成均匀的涂层,而光谱证实了每个CdTe QD / PE涂层循环中CdTe纳米晶体的沉积,以及荧光标记的抗lgG的沉积。通过与生物特异性伴侣IgG的凝集测定显示珠具有免疫活性,导致形成珠聚集体并增加分散体的光散射。期望利用LbL组装方法来制备具有增加的复杂性(例如,几种类型的QD和多种生物功能)的QD标签珠子,这有望在需要设计者颗粒的一系列生物技术应用领域中开辟新的机会。

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