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基于共振能量转移的即时诊断生物传感器:进展与展望。

Resonance Energy Transfer-Based Biosensors for Point-of-Need Diagnosis-Progress and Perspectives.

机构信息

CSIRO Health & Biosecurity, Parkville, 343 Royal Parade, Melbourne, VIC 3030, Australia.

CSIRO Health & Biosecurity, Black Mountain, Canberra, ACT 2600, Australia.

出版信息

Sensors (Basel). 2021 Jan 19;21(2):660. doi: 10.3390/s21020660.

Abstract

The demand for point-of-need (PON) diagnostics for clinical and other applications is continuing to grow. Much of this demand is currently serviced by biosensors, which combine a bioanalytical sensing element with a transducing device that reports results to the user. Ideally, such devices are easy to use and do not require special skills of the end user. Application-dependent, PON devices may need to be capable of measuring low levels of analytes very rapidly, and it is often helpful if they are also portable. To date, only two transduction modalities, colorimetric lateral flow immunoassays (LFIs) and electrochemical assays, fully meet these requirements and have been widely adopted at the point-of-need. These modalities are either non-quantitative (LFIs) or highly analyte-specific (electrochemical glucose meters), therefore requiring considerable modification if they are to be co-opted for measuring other biomarkers. Förster Resonance Energy Transfer (RET)-based biosensors incorporate a quantitative and highly versatile transduction modality that has been extensively used in biomedical research laboratories. RET-biosensors have not yet been applied at the point-of-need despite its advantages over other established techniques. In this review, we explore and discuss recent developments in the translation of RET-biosensors for PON diagnoses, including their potential benefits and drawbacks.

摘要

即时检测(point-of-need,PON)诊断对于临床和其他应用的需求持续增长。目前,大部分此类需求由生物传感器来满足,生物传感器将生物分析传感元件与将结果报告给用户的换能器结合在一起。理想情况下,这些设备易于使用,不需要终端用户具备特殊技能。依赖于应用的 PON 设备可能需要能够非常快速地测量低水平的分析物,如果它们还具有便携性,则通常会很有帮助。迄今为止,只有两种转换模式,比色侧向流动免疫测定(lateral flow immunoassays,LFIs)和电化学生物传感器,完全满足这些要求,并已在即时检测中得到广泛应用。这些模式要么是非定量的(LFIs),要么是高度针对特定分析物的(电化学生物传感器葡萄糖计),因此如果要将其用于测量其他生物标志物,则需要进行大量修改。基于Förster 共振能量转移(Förster resonance energy transfer,RET)的生物传感器结合了一种定量且用途广泛的转换模式,该模式已在生物医学研究实验室中得到广泛应用。尽管具有优于其他现有技术的优势,但 RET 生物传感器尚未在即时检测中应用。在这篇综述中,我们探讨并讨论了 RET 生物传感器在即时诊断中的转化的最新进展,包括它们的潜在优势和缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5825/7833371/ca01a8da4626/sensors-21-00660-g002.jpg

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