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用于监测肠道双层微流控芯片中缺氧情况的高性能喷墨打印嵌入式电化学传感器。

High performance inkjet printed embedded electrochemical sensors for monitoring hypoxia in a gut bilayer microfluidic chip.

作者信息

Khalid Muhammad Asad Ullah, Kim Kyung Hwan, Chethikkattuveli Salih Abdul Rahim, Hyun Kinam, Park Sung Hyuk, Kang Bohye, Soomro Afaque Manzoor, Ali Muhsin, Jun Yesl, Huh Dongeun, Cho Heeyeong, Choi Kyung Hyun

机构信息

Department of Mechatronics Engineering, Jeju National University, Republic of Korea.

School of Mechanical Engineering, Chung-Ang University, 221, Heukseok-Dong, Dongjak-Gu, Seoul 156-756, Republic of Korea.

出版信息

Lab Chip. 2022 May 3;22(9):1764-1778. doi: 10.1039/d1lc01079d.

Abstract

Sensing devices have shown tremendous potential for monitoring state-of-the-art organ chip devices. However, challenges like miniaturization while maintaining higher performance, longer operating times for continuous monitoring, and fabrication complexities limit their use. Herein simple, low-cost, and solution-processible inkjet dispenser printing of embedded electrochemical sensors for dissolved oxygen (DO) and reactive oxygen species (ROS) is proposed for monitoring developmental (initially normoxia) and induced hypoxia in a custom-developed gut bilayer microfluidic chip platform for 6 days. The DO sensors showed a high sensitivity of 31.1 nA L mg with a limit of detection (LOD) of 0.67 mg L within the 0-9 mg L range, whereas the ROS sensor had a higher sensitivity of 1.44 nA μm with a limit of detection of 1.7 μm within the 0-300 μm range. The dynamics of the barrier tight junctions are quantified with the help of an in-house developed -epithelial-endothelial electrical impedance (TEEI) sensor. Immunofluorescence staining was used to evaluate the expressions of HIF-1α and tight junction protein (TJP) ZO-1. This platform can also be used to enhance bioavailability assays, drug transport studies under an oxygen-controlled environment, and even other barrier organ models, as well as for various applications like toxicity testing, disease modeling and drug screening.

摘要

传感设备在监测先进的器官芯片设备方面显示出巨大潜力。然而,诸如在保持更高性能的同时实现小型化、连续监测的更长运行时间以及制造复杂性等挑战限制了它们的应用。本文提出了一种简单、低成本且可溶液加工的喷墨分配器印刷嵌入式电化学传感器,用于溶解氧(DO)和活性氧(ROS)的监测,该传感器可在定制开发的肠道双层微流控芯片平台上对发育(初始常氧)和诱导性缺氧状态进行6天的监测。DO传感器在0 - 9 mg/L范围内表现出31.1 nA L/mg的高灵敏度,检测限(LOD)为0.67 mg/L,而ROS传感器在0 - 300 μm范围内具有1.44 nA/μm的更高灵敏度,检测限为1.7 μm。借助内部开发的上皮 - 内皮电阻抗(TEEI)传感器对屏障紧密连接的动态变化进行了量化。免疫荧光染色用于评估HIF - 1α和紧密连接蛋白(TJP)ZO - 1的表达。该平台还可用于增强生物利用度测定、在氧控环境下的药物转运研究,甚至其他屏障器官模型,以及用于毒性测试、疾病建模和药物筛选等各种应用。

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