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基于硝酸纤维素膜的集成微流控系统,利用磁性复合膜微器件和细菌特异性适体进行细菌检测。

A nitrocellulose membrane-based integrated microfluidic system for bacterial detection utilizing magnetic-composite membrane microdevices and bacteria-specific aptamers.

机构信息

Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu, 30013 Taiwan.

出版信息

Lab Chip. 2018 May 29;18(11):1633-1640. doi: 10.1039/c8lc00251g.

Abstract

Bacteria such as Acinetobacter baumannii (AB) can cause serious infections, resulting in high mortality if not diagnosed early and treated properly; there is consequently a need for rapid and accurate detection of this bacterial species. Therefore, we developed a new, nitrocellulose-based microfluidic system featuring AB-specific aptamers capable of automating the bacterial detection process via the activity of microfluidic devices composed of magnetic-composite membranes. Electromagnets were used to actuate these microfluidic devices such that the entire diagnostic process could be conducted in the integrated microfluidic system within 40 minutes with a limit of detection as low as 450 CFU per reaction for AB. Aptamers were used to capture AB in complex samples on nitrocellulose membranes, and a simple colorimetric assay was used to estimate bacterial loads. Given the ease of use, portability, and sensitivity of this aptamer-based microfluidic system, it may hold great promise for point-of-care diagnostics.

摘要

鲍曼不动杆菌(AB)等细菌可引起严重感染,如果不能及早诊断和适当治疗,死亡率很高;因此,需要快速、准确地检测这种细菌。为此,我们开发了一种基于硝酸纤维素的新型微流控系统,该系统具有 AB 特异性适体,可通过由磁性复合膜组成的微流控装置的活性自动完成细菌检测过程。电磁铁用于驱动这些微流控装置,使得整个诊断过程可以在 40 分钟内完成,对 AB 的检测限低至 450CFU/反应。适体被用于在硝酸纤维素膜上捕获复杂样本中的 AB,并用简单的比色法来估计细菌负荷。鉴于这种基于适体的微流控系统易于使用、便携和灵敏,它可能在即时诊断方面具有很大的应用前景。

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