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利用离子敏感场效应晶体管分析生物屏障的化学诱导 pH 扰动。

Chemically Induced pH Perturbations for Analyzing Biological Barriers Using Ion-Sensitive Field-Effect Transistors.

机构信息

Department of Biomedical Engineering, Faculty of Science and Engineering, Toyo University, 2100 Kujirai, Kawagoe, Saitama 350-8585, Japan.

出版信息

Sensors (Basel). 2021 Nov 1;21(21):7277. doi: 10.3390/s21217277.

Abstract

Potentiometric pH measurements have long been used for the bioanalysis of biofluids, tissues, and cells. A glass pH electrode and ion-sensitive field-effect transistor (ISFET) can measure the time course of pH changes in a microenvironment as a result of physiological and biological activities. However, the signal interpretation of passive pH sensing is difficult because many biological activities influence the spatiotemporal distribution of pH in the microenvironment. Moreover, time course measurement suffers from stability because of gradual drifts in signaling. To address these issues, an active method of pH sensing was developed for the analysis of the cell barrier in vitro. The microenvironmental pH is temporarily perturbed by introducing a low concentration of weak acid (NH) or base (CHCOO) to cells cultured on the gate insulator of ISFET using a superfusion system. Considering the pH perturbation originates from the semi-permeability of lipid bilayer plasma membranes, induced proton dynamics are used for analyzing the biomembrane barriers against ions and hydrated species following interaction with exogenous reagents. The unique feature of the method is the sensitivity to the formation of transmembrane pores as small as a proton (H), enabling the analysis of cell-nanomaterial interactions at the molecular level. The new modality of cell analysis using ISFET is expected to be applied to nanomedicine, drug screening, and tissue engineering.

摘要

电化学 pH 测量法长期以来一直用于生物体液、组织和细胞的生物分析。玻璃 pH 电极和离子敏场效应晶体管 (ISFET) 可以测量由于生理和生物活性导致的微环境中 pH 值变化的时间过程。然而,由于许多生物活性会影响微环境中 pH 值的时空分布,因此被动 pH 感应的信号解释较为困难。此外,由于信号逐渐漂移,时间过程测量的稳定性较差。为了解决这些问题,开发了一种主动 pH 感应方法,用于体外细胞屏障的分析。使用灌流系统,在 ISFET 的栅极绝缘体上培养细胞时,通过引入低浓度弱酸 (NH) 或弱碱 (CHCOO) 来暂时干扰微环境 pH 值。考虑到 pH 扰动源于脂质双层质膜的半透性,诱导的质子动力学可用于分析生物膜屏障对离子和水合物质的阻碍作用,这些物质与外源性试剂相互作用。该方法的独特之处在于对质子 (H) 大小的跨膜孔形成具有敏感性,从而能够在分子水平上分析细胞-纳米材料的相互作用。使用 ISFET 的新型细胞分析方法有望应用于纳米医学、药物筛选和组织工程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c2d/8588202/5cdf1c83572f/sensors-21-07277-g001.jpg

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