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首页> 外文期刊>ACS nano >Zwitterion and Oligo(ethylene glycol) Synergy Minimizes Nonspecific Binding of Compact Quantum Dots
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Zwitterion and Oligo(ethylene glycol) Synergy Minimizes Nonspecific Binding of Compact Quantum Dots

机译:两性硫代和寡核苷酸(乙二醇)协同作用最小化紧凑型量子点的非特异性绑定

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Quantum dots (QDs) are a class of fluorescent nanocrystals in development as labels for molecular imaging in cells and tissues. Recently, coatings for quantum dots based on multidentate polymers have improved labeling performance in a range of bioanalytical applications, primarily due to reduced probe hydrodynamic size. Now, an ongoing challenge is to eliminate nonspecific binding between these small probes and cellular components that mask specifically labeled molecules. Here, we describe insights into controlling and minimizing intermolecular interactions governing nonspecific binding using multidentate polymers with tunable hydrophilic functional groups that are cationic, anionic, zwitterionic (ZW), or nonionic (oligoethylene glycol; OEG). By fixing surface-binding groups and polymer length, coated colloids have similar sizes but diverse physicochemical properties. We measure binding to globular proteins, fixed cells, and living cells and observe a substantial improvement in nonspecific binding resistance when surfaces are functionalized with a combination of ZW and OEG. The independent underlying effects of counterion adsorption and flexibility appear to synergistically resist adsorption when combined, particularly for fixed cells enriched in both charged and hydrophobic moieties. We further show that ZW-OEG QDs are stable under diverse conditions and can be self-assembled with antibodies to specifically label surface antigens on living cells and cytoplasmic proteins in fixed cells. This surface engineering strategy can be adopted across the diverse range of colloidal materials currently in use and in development for biomedical applications to optimize their molecular labeling specificity.
机译:量子点(QDS)是一类开发中的荧光纳米晶体作为细胞和组织中分子成像的标签。最近,基于多型聚合物的量子点的涂层在一系列生物分析应用中具有改善的标记性能,主要是由于探针流体动力学尺寸的降低。现在,持续的挑战是消除这些小探针和细胞组分之间的非特异性结合,所述小探针和细胞组分特异性标记的分子。在这里,我们描述了使用多燕麦聚合物用阳离子,阴离子,两性离子(Zw)或非离子(寡甘油; OEG)的可调谐亲水官能团控制和最小化分子间相互作用控制和最小化分子间相互作用的洞察。通过固定表面结合基团和聚合物长度,涂覆的胶体具有相似的尺寸,但不同的物理化学性质。我们测量与球状蛋白质,固定细胞和活细胞的结合,并且当用Zw和Oeg的组合官能化时,观察到非特异性结合性的显着提高。抗衡离子吸附和柔韧性的独立潜在影响似乎在组合时易于抵抗吸附,特别是对于富含带电和疏水部分的固定细胞。我们进一步表明,ZW-OEG QD在不同的条件下稳定,可以用抗体自组装,以特定标记在固定细胞中的活细胞和细胞质蛋白上的表面抗原。这种表面工程策略可以通过目前在使用的各种胶体材料中采用以及生物医学应用的发展,以优化其分子标记特异性。

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