论文标题

全息免疫测定

Holographic immunoassays

论文作者

Snyder, Kaitlynn, Quddus, Rushna, Hollingsworth, Andrew D., Kirshenbaum, Kent, Grier, David G.

论文摘要

全息颗粒表征报告的探针珠的大小取决于结合靶分子覆盖的表面积的比例,因此可以用作分子结合的测定法。我们通过测量对抗体免疫球蛋白G(IgG)和免疫球蛋白M(IgM)的不可逆转结合的动力学来验证这项技术,因为它们附着于涂有蛋白质的微米平时胶体珠,它们覆盖了蛋白质A。这些测量结果A含量A的结合速率和固定速率可以得到抗体的浓度。因此,全息分子结合测定方法可用于执行与常规血清学测试互补的快速定量免疫测定。

The size of a probe bead reported by holographic particle characterization depends on the proportion of the surface area covered by bound target molecules and so can be used as an assay for molecular binding. We validate this technique by measuring the kinetics of irreversible binding for the antibodies immunoglobulin G (IgG) and immunoglobulin M (IgM) as they attach to micrometer-diameter colloidal beads coated with protein A. These measurements yield the antibodies' binding rates and can be inverted to obtain the concentration of antibodies in solution. Holographic molecular binding assays therefore can be used to perform fast quantitative immunoassays that are complementary to conventional serological tests.

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