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基于磁性纳米粒子的微流控装置,使用 3D 打印模具制造,用于从血液中分离大肠杆菌。

A magnetic nanoparticle-based microfluidic device fabricated using a 3D-printed mould for separation of Escherichia coli from blood.

机构信息

Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057, Braga, Portugal.

LABBELS -Associate Laboratory, Braga and Guimarães, Portugal.

出版信息

Mikrochim Acta. 2023 Aug 18;190(9):356. doi: 10.1007/s00604-023-05924-7.

Abstract

Herein, A microfluidic device is described, produced with a 3D-printed master mould that rapidly separates and concentrates Escherichia coli directly from whole blood samples, enabling a reduction in the turnaround time of bloodstream infections (BSIs) diagnosis. Moreover, it promotes the cleansing of the blood samples whose complexity frequently hampers bacterial detection. The device comprises a serpentine mixing channel with two inlets, one for blood samples (spiked with bacteria) and the other for magnetic nanoparticles (MNPs) functionalized with a (bacterio)phage receptor-binding protein (RBP) with high specificity for E. coli. After the magnetic labelling of bacteria throughout the serpentine, the microchannel ends with a trapping reservoir where bacteria-MNPs conjugates are concentrated using a permanent magnet. The optimized sample preparation device successfully recovered E. coli (on average, 66%) from tenfold diluted blood spiked within a wide range of bacterial load (10 CFU to 10 CFU mL). The non-specific trapping, tested with Staphylococcus aureus, was at a negligible level of 12%. The assay was performed in 30 min directly from diluted blood thus presenting an advantage over the conventional enrichment in blood cultures (BCs). The device is simple and cheap to fabricate and can be tailored for multiple bacterial separation from complex clinical samples by using RBPs targeting different species. Moreover, the possibility to integrate a biosensing element to detect bacteria on-site can provide a reliable, fast, and cost-effective point-of-care device.

摘要

本文介绍了一种微流控装置,该装置采用 3D 打印的主模具制作,可从全血样本中快速分离和浓缩大肠杆菌,从而缩短血流感染(BSI)诊断的周转时间。此外,它还促进了对血液样本的净化,这些血液样本的复杂性常常阻碍了细菌的检测。该装置包括一个带有两个入口的蛇形混合通道,一个用于血样(加入细菌),另一个用于经(细菌)噬菌体受体结合蛋白(RBP)功能化的磁性纳米颗粒(MNPs),RBP 对大肠杆菌具有高度特异性。在整个蛇形通道中对细菌进行磁性标记后,微通道末端是一个捕获储液器,其中使用永磁体浓缩细菌-MNP 缀合物。经过优化的样品制备装置成功地从稀释 10 倍的血液中回收了大肠杆菌(平均 66%),该血液中细菌负载范围很广(10 CFU 至 10 CFU mL)。用金黄色葡萄球菌进行的非特异性捕获率可忽略不计,为 12%。该检测可以直接从稀释的血液中在 30 分钟内完成,因此与血液培养(BC)中的常规富集相比具有优势。该装置制造简单且成本低廉,通过使用针对不同物种的 RBP,可以针对从复杂临床样本中分离多种细菌进行定制。此外,集成生物传感元件以现场检测细菌的可能性可以提供可靠、快速且具有成本效益的即时护理设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a729/10439042/4bfc655686da/604_2023_5924_Fig1_HTML.jpg

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