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基于 UiO-66-NH 的微生物复合材料通过流动 cytometry 检测多种结直肠癌相关 microRNAs。

Microorganism@UiO-66-NH Composites for the Detection of Multiple Colorectal Cancer-Related microRNAs with Flow Cytometry.

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.

College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Anal Chem. 2020 Sep 15;92(18):12338-12346. doi: 10.1021/acs.analchem.0c02017. Epub 2020 Jul 28.

Abstract

High-throughput analyses of multitarget markers can facilitate rapid and accurate clinical diagnosis. Suspension array assays, a flow cytometry-based analysis technology, are among some of the most promising multicomponent analysis methods for clinical diagnostics and research purposes. These assays are appropriate for examining low-volume, complex samples having trace amounts of analytes due to superior elimination of background. Physical shape is an important and promising code system, which uses a set of visually distinct patterns to identify different assay particles. Here, we presented a morphology recognizable suspension arrays based on the microorganisms with different morphologies. In this study, UiO-66-NH (UiO stands for University of Oslo) metal-organic frameworks (MOFs), was wrapped on the microorganism surface to form an innovative class of microorganism@UiO-66-NH composites for suspension array assays. The use of microorganisms endowed composites barcoding ability with their different morphology and size. Meanwhile, the UiO-66-NH provided a stable rigid shell, large specific surface area, and metal(IV) ions with multiple binding sites, which could simplify the protein immobilization procedure and enhance detection sensitivity. With this method, simultaneous detection of three colorectal cancer-related microRNA (miRNA), including miRNA-21, miRNA-17, and miRNA-182, could be easily achieved with femtomolar sensitivity by using a commercial flow cytometer. The synergy between microorganisms and MOFs make the composites a prospective barcoding candidate with excellent characteristics for multicomponent analysis, offering great potential for the development of high throughput and accurate diagnostics.

摘要

高通量分析多靶点标志物可以促进快速准确的临床诊断。悬浮阵列分析是一种基于流式细胞术的分析技术,是最有前途的用于临床诊断和研究目的的多成分分析方法之一。这些分析适用于检查低体积、复杂的样本,因为它们可以更好地消除背景,因此能够检测痕量的分析物。物理形状是一种重要的、有前途的编码系统,它使用一组视觉上明显的图案来识别不同的分析物颗粒。在这里,我们提出了一种基于具有不同形态的微生物的可识别形态的悬浮阵列。在这项研究中,UiO-66-NH(UiO 代表奥斯陆大学)金属有机骨架(MOFs)被包裹在微生物表面,形成一种用于悬浮阵列分析的创新微生物@UiO-66-NH 复合材料。微生物的使用赋予了复合材料以其不同的形态和大小进行编码的能力。同时,UiO-66-NH 提供了稳定的刚性壳、大的比表面积和具有多个结合位点的金属(IV)离子,这可以简化蛋白质固定化过程并提高检测灵敏度。使用这种方法,通过使用商业流式细胞仪,可以以飞摩尔灵敏度轻松实现对三种结直肠癌相关 microRNA(miRNA),包括 miRNA-21、miRNA-17 和 miRNA-182 的同时检测。微生物和 MOFs 的协同作用使复合材料成为具有出色特性的多成分分析的有前途的编码候选物,为高通量和准确诊断的发展提供了巨大潜力。

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