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MAGNETIC ASSISTANCE FOR SUPPRESSING CROSS-REACTIONS BETWEENBIOMOLECULES IN IMMUNOASSAY

机译:抑制免疫分析中 r n生物分子之间交叉反应的磁辅助

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摘要

A method involving the use of magnetic nanoparticles to suppress the cross-reactions in immunoassay is developed. Antibodies are coated onto magnetic nanoparticles. These antibodies bind with target and non-target molecules. Once an alternative-current magnetic field is applied, magnetic nanoparticles oscillate with the magnetic field. The target and non-target molecules attached onto magnetic nanoparticles via antibodies experience a centrifugal force, which is against the association between antibodies and targeton-target molecules. Theoretically, the centrifugal force is proportional to the square of the frequency of the applied magnetic field. Thus, the strength of the centrifugal force can be manipulated by changing the frequency of the applied magnetic field. By well controlling the frequency of applied magnetic field, the centrifugal force can be stronger than the binding between antibodies and non-target molecules, but still weaker than that of target molecules. Consequently, the binding between antibodies and non-target molecules is broken by the centrifugal force.
机译:开发了一种涉及使用磁性纳米颗粒抑制免疫测定中交叉反应的方法。将抗体包被在磁性纳米颗粒上。这些抗体与靶分子和非靶分子结合。一旦施加交流磁场,磁性纳米颗粒就会随磁场振荡。通过抗体附着在磁性纳米颗粒上的靶标和非靶标分子会受到离心力,该离心力与抗体和靶标/非靶标分子之间的缔合相反。从理论上讲,离心力与所施加磁场的频率的平方成正比。因此,可以通过改变施加磁场的频率来控制离心力的强度。通过很好地控制施加磁场的频率,离心力可以比抗体和非目标分子之间的结合强,但仍比目标分子的离心力弱。因此,抗体和非靶分子之间的结合被离心力破坏。

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