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采用珠磨裂解和环介导等温扩增技术在集成式离心盘上对细菌进行多重检测。

Multiplex detection of bacteria on an integrated centrifugal disk using bead-beating lysis and loop-mediated amplification.

机构信息

Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing, 100084, China.

Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, Hangzhou, 310003, China.

出版信息

Sci Rep. 2017 May 3;7(1):1460. doi: 10.1038/s41598-017-01415-x.

Abstract

Although culture-based identification of bacteria is the gold-standard for the diagnosis of infectious diseases, it is time consuming. Recent advances in molecular diagnostics and microfluidic technologies have opened up new avenues for rapid detection of bacteria. Here, we describe a centrifugal-microfluidic chip for the detection of bacteria by integrating the cell lysis, clarification, and loop-mediated amplification (LAMP). The major advantages of this chip are as follows. Firstly, bacteria lysis was innovatively achieved by rotating a pair of magnets to generate bead-beating while the chip was kept stationary during lysis, which simplified the chip design because no additional valve was needed. Secondly, the on-chip assay time was short (within 70 min), which was competitive in emergency situations. Thirdly, results of the analysis can be interpreted by using a fluorescence detector or by the naked-eye, making it versatile in many areas, especially the resource-limited areas. The on-chip limits of detection of six types of bacteria were valued by gel electrophoresis, showing the similar results compared to the bench-top LAMP protocol. This chip can be used for rapid, sensitive, accurate and automated detection of bacteria, offering a promising alternative for simplifying the molecular diagnostics of infectious diseases.

摘要

虽然基于培养的细菌鉴定是感染性疾病诊断的金标准,但它耗时较长。近年来,分子诊断和微流控技术的进步为快速检测细菌开辟了新途径。在这里,我们描述了一种离心式微流控芯片,用于通过整合细胞裂解、澄清和环介导的扩增(LAMP)来检测细菌。该芯片的主要优点如下。首先,通过旋转一对磁铁来实现细菌裂解,从而产生珠击,同时在裂解过程中保持芯片静止,这简化了芯片设计,因为不需要额外的阀。其次,芯片上的检测时间很短(在 70 分钟内),在紧急情况下具有竞争力。第三,分析结果可以通过荧光检测仪或肉眼进行解释,使其在许多领域具有多功能性,特别是在资源有限的地区。通过凝胶电泳评估了该芯片对六种类型细菌的检测限,与台式 LAMP 方案的结果相似。该芯片可用于快速、灵敏、准确和自动化的细菌检测,为简化感染性疾病的分子诊断提供了一种有前途的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d91c/5431220/a1938bc0743b/41598_2017_1415_Fig1_HTML.jpg

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