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基于磁性纳米粒子的生物分子成像与扫描磁粒子谱仪。

Magnetic nanoparticle-based biomolecule imaging with a scanning magnetic particle spectrometer.

机构信息

Institut für Elektrische Messtechnik und Grundlagen der Elektrotechnik, Technische Universität Braunschweig, Hans-Sommer-Str. 66, Braunschweig D-38106, Germany.

出版信息

Nanotechnology. 2020 May 29;31(22):225101. doi: 10.1088/1361-6528/ab776a. Epub 2020 Feb 18.


DOI:10.1088/1361-6528/ab776a
PMID:32069445
Abstract

This study reports on a wash-free, inexpensive and sensitive approach of biomolecule imaging with magnetic nanoparticles (MNPs) via a custom-built scanning magnetic particle spectrometer (SMPS). Streptavidin-coated MNPs are used as magnetic biomarkers for the detection of Immunoglobulin G (IgG) conjugated with biotin (IgG-Biotin) while five samples with different-concentration IgG-Biotin are prepared for experiments. The measurements of the ac susceptibility indicate that the conjugation of the IgG-Biotin onto the surface of the MNPs forms cross-linking between the MNPs, thus increasing the characteristic Brownian relaxation time from 0.627 to 1.448 ms. The ratio of the 3rd to the 1st harmonics is measured on the samples with different-concentration IgG-Biotin in ac magnetic fields with a frequency ranging from about 300 Hz to 2 kHz. It shows that the measurement sensitivity of the IgG-Biotin concentration decreases from 4.62 × 10 to 0.39 × 10 nM with increasing excitation frequency. Phantom images of the harmonic ratio, measured with the SMPS, indicate that unbound and bound MNPs can be easily distinguished. Furthermore, the excitation frequency dependence of the contrast-to-noise ratio of the images is discussed based on the measurement sensitivity and the standard deviation of the measured image intensity. This study demonstrates the feasibility of the SMPS for imaging biomolecules bound onto the MNPs, which is of great interest to disease diagnostics and therapy.

摘要

本研究报告了一种免洗、廉价且灵敏的生物分子成像方法,使用定制的扫描磁颗粒光谱仪(SMPS)通过磁性纳米粒子(MNPs)进行。链霉亲和素涂层的 MNPs 用作磁性生物标志物,用于检测与生物素缀合的免疫球蛋白 G(IgG-Biotin),同时制备了五种不同浓度 IgG-Biotin 的样品用于实验。交流磁化率的测量表明,IgG-Biotin 接枝到 MNPs 表面形成了 MNPs 之间的交联,从而将特征布朗松弛时间从 0.627 增加到 1.448 ms。在交流磁场中,用频率范围约为 300 Hz 至 2 kHz 的不同浓度 IgG-Biotin 的样品测量了第三和第一谐波的比值。结果表明,随着激发频率的增加,IgG-Biotin 浓度的测量灵敏度从 4.62×10降至 0.39×10 nM。使用 SMPS 测量的谐波比的幻影图像表明,未结合和结合的 MNPs 可以很容易地区分。此外,还根据测量灵敏度和测量图像强度的标准偏差讨论了图像的对比噪声比的激发频率依赖性。本研究证明了 SMPS 用于成像结合到 MNPs 上的生物分子的可行性,这对疾病诊断和治疗具有重要意义。

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引用本文的文献

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