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全集成和可折叠微器件,用琼脂糖封装,具有长期储存潜力,可用于即时检测多种食源性病原体。

Fully Integrated and Foldable Microdevice Encapsulated with Agarose for Long-Term Storage Potential for Point-of-Care Testing of Multiplex Foodborne Pathogens.

机构信息

Department of BioNano Technology , Gachon University , 1342 Seongnam-daero , Sujeong-gu, Seongnam-si , Gyeonggi-do 13120 , Korea.

出版信息

ACS Sens. 2019 Oct 25;4(10):2754-2762. doi: 10.1021/acssensors.9b01299. Epub 2019 Sep 24.

Abstract

In this study, we fabricated a fully integrated and foldable microdevice encapsulated with 2-hydroxyethyl agarose for long-term storage of reagents for the integration of isothermal amplification and subsequent colorimetric detection for the monitoring of multiplex foodborne pathogens. The microdevice comprises a reaction zone and a detection zone. Both zones were made of a thin polycarbonate film and sealed by an adhesive film to make the microdevice foldable. The 2-hydroxyethyl agarose with loop-mediated isothermal amplification (LAMP) reagents and silver nitrate were deposited in the reaction and detection chambers, respectively, for long-term maintenance of reagent activity. A thin graphene-based heater associated with a handheld battery was employed to supply a constant temperature for on-chip amplification for 30 min. To simplify the sample manipulation process, a folding motion was adopted to allow the loading of LAMP amplicons from the reaction to the detection chambers and a colorimetric strategy was used for simple visual read-out of the results on-site. Using the agarose, the reagents were successfully stored and the reagent activity was maintained for at least 45 days. Prior to performing multiplex detections, the spiked juice was thermally lysed and purified with polydopamine-coated paper. The amplifications of spp. and O157:H7 ( O157:H7) were successfully demonstrated based on the stable isothermal condition attained by the heater. The microdevice can detect the low concentration of O157:H7 at 2.5 × 10 copies per mL. The introduced microdevice acts as a simple and user-friendly platform for the identification of foodborne pathogens, paving the way for the construction of a truly portable, read-out microdevice for use as a public healthcare monitoring device.

摘要

在本研究中,我们制备了一个完全集成和可折叠的微器件,该微器件用 2-羟乙基琼脂糖封装,用于长期储存用于等温扩增的试剂,以及随后用于监测多重食源性病原体的比色检测的试剂。该微器件包括反应区和检测区。两个区域均由薄聚碳酸酯薄膜制成,并通过粘合薄膜密封,使微器件可折叠。2-羟乙基琼脂糖与环介导等温扩增(LAMP)试剂和硝酸银分别沉积在反应室和检测室中,以长期保持试剂的活性。使用与手持电池相关联的薄基于石墨烯的加热器为芯片上扩增提供 30 分钟的恒定温度。为了简化样品处理过程,采用折叠运动将 LAMP 扩增子从反应室加载到检测室,并采用比色策略现场进行简单的目视读取结果。使用琼脂糖,成功地储存了试剂,并且试剂活性至少可以维持 45 天。在进行多重检测之前,用聚多巴胺涂覆的纸对掺入的果汁进行热裂解和纯化。基于加热器达到的稳定等温条件,成功地证明了 spp. 和 O157:H7(O157:H7)的扩增。该微器件可以检测到低浓度的 O157:H7,浓度为 2.5×10 拷贝/mL。引入的微器件作为一种简单易用的平台,用于鉴定食源性病原体,为构建真正便携式、可读取的微器件,用作公共医疗保健监测设备铺平了道路。

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