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单纳米颗粒差异免疫分析用于多重胃癌生物标志物监测。

Single-Nanoparticle Differential Immunoassay for Multiplexed Gastric Cancer Biomarker Monitoring.

机构信息

Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry, Sichuan University, Chengdu 610064, Sichuan, P. R. China.

Department of Clinical Laboratory, Chengdu Seventh People's Hospital, Chengdu 610041, Sichuan, P. R. China.

出版信息

Anal Chem. 2022 Sep 20;94(37):12899-12906. doi: 10.1021/acs.analchem.2c03013. Epub 2022 Sep 7.

Abstract

Precision medicine demands the best application of multiple unambiguous biomarkers to bring uniform decisions in disease prognosis. The remarkable development of heterogeneous immunoassay greatly promotes precision medicine when combined with the biomarker combination strategy. Nevertheless, the cumbersome washing steps in heterogeneous immunoassay have inevitably compromised the accuracy because of the sample losses and nature change of the matrix, challenging the further exploration of a more facile and lower limit-of-detection analysis. The new methodologies with high throughputs and specificity are never out of date to provide simultaneous evaluations and uniform decisions on multiple analytes through a simple process. Herein, we propose a new wash-free immunoassay, named differential assay, for multiplexed biomarker monitoring. The method is based on counting the number difference of unbound nanoparticle tags before and after immunoreactions from a solid support (i.e., magnetic microsphere) by single-particle inductively coupled plasma mass spectrometry (sp-ICP-MS), discarding the tedious washing steps. We primarily explore the proof-of-concept proposal within two types (sandwich and competitive assay), demonstrating the good feasibility for further facile clinical practice. To provide efficient multiplexed evaluations, we synthesized PtNPs with four diameters and screened the most suitable size for efficient differential immunoassay. The wash-free strategy was successfully utilized in simultaneous serological biomarker (CA724, CA199, and CEA) evaluation, with results in good accordance with those measured by the clinical routine method. Potentially, the proposed differential bioassay can be regarded as a more facile and valuable tool in malignancy prognosis and cancer recurrence monitoring.

摘要

精准医学需要最好地应用多种明确的生物标志物,以便在疾病预后方面做出统一的决策。异质免疫分析的显著发展,与生物标志物组合策略相结合,极大地促进了精准医学。然而,异质免疫分析中繁琐的洗涤步骤不可避免地因样品损失和基质性质的变化而影响了准确性,对更简单、更低检测限的分析方法的进一步探索提出了挑战。高通量和特异性的新方法永远不会过时,可以通过简单的过程同时评估和统一多个分析物的决策。在这里,我们提出了一种新的无洗涤免疫分析方法,称为差分分析,用于多重生物标志物监测。该方法基于通过单颗粒电感耦合等离子体质谱 (sp-ICP-MS) 从固体载体(即磁性微球)上计算免疫反应前后未结合的纳米颗粒标记物数量的差异,从而摒弃了繁琐的洗涤步骤。我们主要探索了两种类型(夹心和竞争分析)的概念验证方案,证明了进一步进行简单临床实践的良好可行性。为了提供高效的多重评估,我们合成了具有四种直径的 PtNPs,并筛选出最适合高效差分免疫分析的尺寸。无洗涤策略成功地应用于同时进行血清生物标志物(CA724、CA199 和 CEA)的评估,其结果与临床常规方法测量的结果非常吻合。潜在地,所提出的差分生物分析可以被视为在恶性肿瘤预后和癌症复发监测中更简单、更有价值的工具。

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