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基于 gd-纳米粒子增强的多价生物传感,结合了磁共振弛豫切换和磁分离。

Gd-nanoparticle-enhanced multivalent biosensing that combines magnetic relaxation switching and magnetic separation.

机构信息

College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, 310058, Zhejiang, China; Fuli Institute of Food Science, Zhejiang University, Hangzhou, 310058, Zhejiang, China; Ningbo Research Institute, Zhejiang University, Ningbo, 315100, Zhejiang, China.

College of Food Science and Technology, Huazhong Agricultural University, Wuhan, 430070, Hubei, China; Key Laboratory of Environment Correlative Dietology, Huazhong Agricultural University, Ministry of Education, Wuhan, China.

出版信息

Biosens Bioelectron. 2020 May 1;155:112106. doi: 10.1016/j.bios.2020.112106. Epub 2020 Feb 19.

Abstract

In this work, we developed a multivalent magnetic biosensing strategy by integrating magnetic separation and magnetic relaxation switching (MRS) where Gd-loaded magnetic nanoparticles acted as the probe. As a transition metal ion, Gd has multiple unpaired electrons in the d-orbitals that can induce a strong fluctuating magnetic field and thus can reduce the transverse relaxation time (T), contributing to a strong magnetic signal. By loading Gd onto magnetic nanoparticles, we prepared a multivalent magnetic probe that combined magnetic separation and MRS for the signal readout. This multivalent sensing technique simplified the procedures and greatly enhanced the detection sensitivity of conventional MRS assays. A sensitive detection of ractopamine in real samples has been demonstrated with this multivalent sensing technique. The magnetic probe enabled the detection of ractopamine in a linear range from 0.1 to 100 ng/mL and the limit of detection was 20 pg/mL, a 25-fold enhancement in the sensitivity compared with conventional MRS assays. This Gd-nanoparticle-mediated MRS biosensor is a potential magnetic platform to detect trace levels of targets in complex samples.

摘要

在这项工作中,我们开发了一种多价磁生物传感策略,通过将磁分离和磁共振弛豫切换(MRS)集成,其中负载 Gd 的磁性纳米粒子作为探针。作为过渡金属离子,Gd 在 d 轨道中有多个未配对的电子,这可以诱导强的波动磁场,从而可以降低横向弛豫时间(T),产生强的磁信号。通过将 Gd 负载到磁性纳米粒子上,我们制备了一种多价磁性探针,将磁分离和 MRS 结合用于信号读出。这种多价传感技术简化了传统 MRS 分析的步骤,并大大提高了检测灵敏度。我们使用这种多价传感技术成功地对实际样品中的莱克多巴胺进行了敏感检测。该磁性探针可在 0.1 至 100ng/mL 的线性范围内检测到莱克多巴胺,检测限为 20pg/mL,与传统 MRS 分析相比,灵敏度提高了 25 倍。这种基于 Gd 纳米粒子的 MRS 生物传感器是一种用于检测复杂样品中痕量目标的潜在磁性平台。

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