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Magnetorelaxometry of magnetic nanoparticles - a new method for the quantitative and specific analysis of biomolecules

机译:磁纳米粒子的磁体抑制术 - 一种新方法,用于生物分子的定量和具体分析

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Magnetic nanoparticles (MNP) as markers for the specific analysis of biomolecules have the advantage that they are stable, non-toxic and that they can be used in opaque media or tissue. Magnetorelaxometry is based on the fact that a MNP relaxes after being aligned by a magnetic field pulse dependent on its size and on whether it is mobil or immobilized. The keypoint is that MNPs bound to specific biological targets can be distinguished from unbound ones by their different relaxation times and relaxation behaviour without the need to wash away unbound markers. In the originally introduced magnetic relaxation immuno assay (MARIA) molecules labelled with MNPs and bound to a molecular structure bound to a solid phase are immobilized, thus suppressing Brownian relaxation. Unbound MNP-labelled molecules show Brownian relaxation, supposed that the diameter of the MNPs exceeds a certain critical value. The current activities are focussed on the analysis of biomolecules, such as bacteria, viruses and even certain proteins, in solution, i.e., without the need to immobilize them. This paper gives an overview about the research activities in the field of magnetorelaxometry and addresses the requirements on MNPs.
机译:磁性纳米颗粒(MNP)作为生物分子的具体分析的标记具有以下优点:它们是稳定的,无毒的并且它们可用于不透明培养基或组织。磁体抑制仪基于MNP在由磁场脉冲对准之后放松的事实,磁场脉冲在其尺寸上对齐并且是否是MOBIL或固定的。关键点是绑定到特定的生物指标的MNP可以从绑定的人通过不同的弛豫时间和放松的行为,而不需要洗去未结合的标记区分。在最初引入的磁性松弛免疫测定(Maria)分子中标记的MnP并与固相结合的分子结构进行固定,从而抑制褐色松弛。未结合的MNP标记分子显示布朗弛豫,假设MNP的直径超过某个临界值。目前的活动侧重于分析生物分子,例如细菌,病毒甚至某些蛋白质,即溶液中,即,无需固定它们。本文概述了磁体区域领域的研究活动,并解决了MNP的要求。

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