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用于纳米颗粒和病毒静电表征与操控的平行差分迁移率分析

Parallel differential mobility analysis for electrostatic characterization and manipulation of nanoparticles and viruses.

作者信息

Allmaier Günter, Maißer Anne, Laschober Christian, Messner Paul, Szymanski Wladyslaw W

机构信息

Vienna University of Technology, Institute of Chemical Technologies and Analytics, Vienna, Austria.

University of Vienna, Faculty of Physics, Boltzmanngasse 5, Vienna, Austria.

出版信息

Trends Analyt Chem. 2011 Jan 1;30(1):123-132. doi: 10.1016/j.trac.2010.10.008.

Abstract

The electrophoretic mobility of charged, airborne nanoparticles (NPs) or macromolecules and their specific complexes opens new avenues for their analysis and handling. The newly developed parallel differential mobility analyzer in combination with an electrostatic particle sampler enables not only the characterization of bio-NPs, but even their sampling while preserving their bioactivity (e.g., the enzyme activity of galactosidase). Precondition for the applicability of this technique is a well-defined charging status of the NPs in question. This charge conditioning can be achieved by means of a radioactive source, Po-210, even if the yield in terms of charged particles is low for sub-20-nm particles and the aging of the source influences the size spectra measured. Nevertheless, this technique enables size-defined sampling and enrichment, combined with real-time measurement of the size of both NPs and viruses. Furthermore, it allows determination of the number of attached biospecific antibodies, thereby providing information about the surface coverage of viruses by antibodies.

摘要

带电的空气传播纳米颗粒(NPs)或大分子及其特定复合物的电泳迁移率为其分析和处理开辟了新途径。新开发的平行差分迁移率分析仪与静电粒子采样器相结合,不仅能够对生物纳米颗粒进行表征,甚至还能在保持其生物活性(如半乳糖苷酶的酶活性)的同时对其进行采样。该技术适用性的前提条件是所讨论的纳米颗粒具有明确的带电状态。这种电荷调节可以通过放射性源Po-210来实现,即使对于小于20纳米的颗粒,带电粒子的产率较低,且源的老化会影响所测量的尺寸谱。尽管如此,该技术仍能实现尺寸定义的采样和富集,并结合对纳米颗粒和病毒尺寸的实时测量。此外,它还能确定附着的生物特异性抗体的数量,从而提供有关病毒表面抗体覆盖情况的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1e3/4397955/e8133c4ce7d1/emss-62793-f0001.jpg

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