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使用高对比度光栅作为即时检测传感器用于免疫抑制剂治疗药物监测的可行性。

Feasibility of Using High-Contrast Grating as a Point-of-Care Sensor for Therapeutic Drug Monitoring of Immunosuppressants.

作者信息

Liu Yi-Cheng, Thantrakul Christina, Kan Shu, Chang-Hasnain Connie, Ho Dong-Ru

机构信息

1Department of Electrical Engineering and Computer SciencesUniversity of California-BerkeleyBerkeleyCA94720USA.

2Department of BioengineeringUniversity of California-BerkeleyBerkeleyCA94720USA.

出版信息

IEEE J Transl Eng Health Med. 2020 Jan 30;8:2800206. doi: 10.1109/JTEHM.2020.2966478. eCollection 2020.

Abstract

Point-of-care (POC) testing has demonstrated great transformative potential in personalized medicine. In particular, patients undergoing transplantation require POC testing to ensure appropriate serum immunosuppressant levels so as to maintain adequate graft function and survival. However, no suitable POC device for monitoring immunosuppressant levels is currently available. Exploiting the latest advances in metamaterials can lead to a breakthrough in POC testing. A high-contrast grating (HCG) biosensor is a low-cost, compact, simple-to-fabricate, and easy-to-operate structure. It is highly sensitive and robust in surface-based biomarker detection, which is favorable for the efficiency of a POC device. In this study, the feasibility of using an HCG as a POC sensor for therapeutic drug monitoring of immunosuppressants was evaluated. The detection efficiency of the most commonly prescribed immunosuppressive medication cyclosporine A by using this sensor was demonstrated to be comparable to those of conventional commercial kits, suggesting that the sensor has the potential to be used as a rapid detection and feedback platform for increasing drug compliance and improving new organ transplant survival.

摘要

即时检测(POC)在个性化医疗中已展现出巨大的变革潜力。特别是,接受移植的患者需要即时检测以确保血清免疫抑制剂水平适宜,从而维持足够的移植物功能和存活。然而,目前尚无适用于监测免疫抑制剂水平的即时检测设备。利用超材料的最新进展可在即时检测方面带来突破。高对比度光栅(HCG)生物传感器是一种低成本、紧凑、易于制造且操作简便的结构。它在基于表面的生物标志物检测中具有高灵敏度和稳健性,这有利于即时检测设备的效率。在本研究中,评估了使用高对比度光栅作为即时检测传感器用于免疫抑制剂治疗药物监测的可行性。结果表明,使用该传感器检测最常用的免疫抑制药物环孢素A的检测效率与传统商业试剂盒相当,这表明该传感器有潜力用作快速检测和反馈平台,以提高药物依从性并改善新器官移植的存活率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7c1/7156223/9b0324a90276/ho1ab-2966478.jpg

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