储存条件对基于电化学贴体的传感器性能的影响

IF 3.5 Q2 CHEMISTRY, ANALYTICAL Sensors & diagnostics Pub Date : 2024-05-14 DOI:10.1039/D4SD00066H
Julia Chung, Adriana Billante, Charlotte Flatebo, Kaylyn K. Leung, Julian Gerson, Nicole Emmons, Tod E. Kippin, Lior Sepunaru and Kevin W. Plaxco
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引用次数: 0

摘要

基于电化学适配体(EAB)的传感器平台是目前报道的唯一一种分子监测方法,它具有以下特点:(1)实时性和有效的连续性;(2)选择性强,可在活体内原位部署;(3)不受其目标的化学或酶反应性影响,因此可适用于多种分析物。这些特性表明,EAB 平台将成为生物医学研究和临床实践的重要工具。为了推进这种可能性,我们在这里探索了 EAB 传感器在存储过程中的稳定性,并将目标识别适配体的保留、传感器的信号增益和适配体的亲和力作为我们的性能指标。我们发现,低温(-20 °C)储存足以在不使用外源防腐剂的情况下保持传感器功能至少六个月。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Effects of storage conditions on the performance of an electrochemical aptamer-based sensor†

The electrochemical aptamer-based (EAB) sensor platform is the only molecular monitoring approach yet reported that is (1) real time and effectively continuous, (2) selective enough to deploy in situ in the living body, and (3) independent of the chemical or enzymatic reactivity of its target, rendering it adaptable to a wide range of analytes. These attributes suggest the EAB platform will prove to be an important tool in both biomedical research and clinical practice. To advance this possibility, here we have explored the stability of EAB sensors upon storage, using retention of the target recognizing aptamer, the sensor's signal gain, and the affinity of the aptamer as our performance metrics. Doing so we find that low-temperature (−20 °C) storage is sufficient to preserve sensor functionality for at least six months without the need for exogenous preservatives.

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Back cover Pursuing theranostics: a multimodal architecture approach. A review on Ti3C2Tx based nanocomposites for the electrochemical sensing of clinically relevant biomarkers Back cover Introduction to Supramolecular Sensors: From Molecules to Materials
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