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首页> 外文期刊>Analytical chemistry >Highly Efficient Binding of Paramagnetic Beads Bioconjugated with 100 000 or More Antibodies to Protein-Coated Surfaces
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Highly Efficient Binding of Paramagnetic Beads Bioconjugated with 100 000 or More Antibodies to Protein-Coated Surfaces

机译:与10万或更多种抗体生物共轭的顺磁珠与蛋白涂层表面的高效结合。

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We report here the first kinetic characterization of 1 μm diameter superparamagnetic particles (MP) decorated with over 100 000 antibodies binding to protein antigens attached to flat surfaces. Surface plasmon resonance (SPR) was used to show that these antibody-derivatized MPs (MP-Ab_2) exhibit irreversible binding with 100-fold increased association rates compared to free antibodies. The estimated upper limit for the dissociation constant of MP-Ab_2 from the SPR sensor surface is 5 fM, compared to 3-8 nM for the free antibodies. These results are explained by up to 2000 interactions of MP-Ab_2 with protein-decorated surfaces. Findings are consistent with highly efficient capture of protein antigens in solution by the MP-Ab_2 and explain in part the utility of these beads for ultrasensitive protein detection into the fM and aM range. Aggregation of these particles on the SPR chip, probably due to residual magnetic microdomains in the particles, also contributes to ultrasensitive detection and may also help drive the irreversible binding.
机译:我们在这里报告的第一个动力学特征是直径为1μm的超顺磁性颗粒(MP),装饰有超过10万种抗体,这些抗体与附着在平坦表面的蛋白质抗原结合。表面等离子体共振(SPR)用于显示与游离抗体相比,这些抗体衍生的MP(MP-Ab_2)具有不可逆的结合,结合率提高了100倍。与游离抗体的3-8 nM相比,MP-Ab_2从SPR传感器表面的解离常数的估计上限为5 fM。这些结果可以通过MP-Ab_2与蛋白修饰表面的多达2000次相互作用来解释。这些发现与MP-Ab_2在溶液中高效捕获蛋白质抗原相一致,并部分解释了这些微珠在fM和aM范围内用于超灵敏蛋白质检测的实用性。这些颗粒在SPR芯片上的聚集(可能是由于颗粒中残留的磁性微区)也有助于超灵敏检测,也可能有助于驱动不可逆结合。

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