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有机电化学晶体管作为新型生物传感平台,用于研究全血和血浆的电响应。

Organic electrochemical transistors as novel biosensing platforms to study the electrical response of whole blood and plasma.

机构信息

Department of Chemical, Materials and Production Engineering - University Federico II, P.le Tecchio 80, I-80125 Naples, Italy.

CNR-SPIN, c/o Department of Physics "Ettore Pancini", P.le Tecchio, 80, I-80125 Napoli, Italy.

出版信息

J Mater Chem B. 2021 Dec 22;10(1):87-95. doi: 10.1039/d1tb01584b.

Abstract

In this paper, for the first time to the best of our knowledge, organic electrochemical transistors are employed to investigate the electrical response of human blood, plasma and alternative buffer solutions that inhibit red blood cell (RBC) aggregation. Our focus is on selecting a suitable electrolytic platform and the related operating conditions, where the RBC effect on the OECT response can be observed separately from the strong ionic environment of plasma in whole blood. The transient response of whole blood to pulse experiments is characterized by two time constants, which can be related to blood viscosity and to the capacitive coupling between the ionic and electronic components of the overall system. The role of capacitive effects, likely due to enhanced double-layer formation by negatively charged RBCs, is also confirmed by the increase of transconductance which was found in RBC suspensions as compared to the suspending buffer. Overall, the complex behavior found in these experiments provides new insights for the development of innovative blood-based sensing devices for biomedical applications.

摘要

在本文中,据我们所知,这是首次将有机电化学晶体管用于研究抑制红细胞(RBC)聚集的人血液、血浆和替代缓冲溶液的电响应。我们的重点是选择合适的电解质平台和相关的工作条件,在这种条件下,可以将 RBC 对 OECT 响应的影响与全血中血浆的强离子环境分开观察。全血对脉冲实验的瞬态响应由两个时间常数来描述,这两个时间常数可以与血液粘度以及整个系统中离子和电子成分之间的电容耦合相关联。通过比较悬浮缓冲液,在 RBC 悬浮液中发现的跨导增加也证实了电容效应的作用,这可能是由于带负电荷的 RBC 增强了双层形成。总的来说,这些实验中发现的复杂行为为开发用于生物医学应用的创新基于血液的感测设备提供了新的见解。

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