电化学免疫传感器检测上皮钠通道作为高血压生物标志物的优化。

IF 3.4 Q2 CHEMISTRY, MEDICINAL
ADMET and DMPK Pub Date : 2023-02-17 eCollection Date: 2023-01-01 DOI:10.5599/admet.1629
Tias F H Lestari, Riyanto Setiyono, Nina Tristina, Yulia Sofiatin, Yeni Wahyuni Hartati
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引用次数: 0

摘要

上皮钠通道(ENaC)是一种跨膜蛋白,通过在各种组织中的表达来调节体内钠盐水平的平衡。体内钠盐的增加与ENaC的表达有关,从而增加血压。因此,ENaC蛋白的过表达可作为高血压的生物标志物。在生物传感器系统中使用抗ENaC检测ENaC蛋白已经用Box-Behnken实验设计进行了优化。本研究的步骤是用金纳米粒子对碳电极进行丝网印刷修饰,然后用半胱胺和戊二醛固定抗ENaC。使用Box-Behnken实验设计优化了实验的最佳条件,如抗ENaC浓度、戊二醛孵育时间和抗ENaC孵育时间,以确定影响免疫传感器电流响应增加的因素,然后将获得的最佳条件应用于ENaC蛋白浓度的变化。抗ENaC的最佳实验条件为2.5μg/mL,戊二醛孵育时间为30分钟,抗ENaC孵育时间90分钟。对于0.09375至1.0 ng/mL的ENaC蛋白浓度范围,所开发的电化学免疫传感器的检测限为0.0372 ng/mL,定量限为0.124 ng/mL。因此,本研究产生的免疫传感器可用于测量正常尿液样本和高血压患者尿液样本的浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The optimization of electrochemical immunosensors to detect epithelial sodium channel as a biomarker of hypertension.

The optimization of electrochemical immunosensors to detect epithelial sodium channel as a biomarker of hypertension.

The optimization of electrochemical immunosensors to detect epithelial sodium channel as a biomarker of hypertension.

The optimization of electrochemical immunosensors to detect epithelial sodium channel as a biomarker of hypertension.

The epithelial sodium channel (ENaC) is a transmembrane protein that regulates the balance of sodium salt levels in the body through its expression in various tissues. The increase in sodium salt in the body is related to the expression of ENaC, thereby increasing blood pressure. Therefore, overexpression of the ENaC protein can be used as a biomarker for hypertension. The detection of ENaC protein using anti-ENaC in the biosensor system has been optimized with the Box-Behnken experimental design. The steps carried out in this research are screen-printed carbon electrode modification with gold nanoparticles, then anti-ENaC was immobilized using cysteamine and glutaraldehyde. Optimum conditions of the experiment, such as anti-ENaC concentration, glutaraldehyde incubation time, and anti-ENaC incubation time, were optimized using the Box-Behnken experimental design to determine the factors that influence the increase in immunosensor current response and the optimum conditions obtained were then applied to variations in ENaC protein concentrations. The optimum experimental conditions for anti-ENaC concentration were 2.5 μg/mL, the glutaraldehyde incubation time was 30 minutes, and the anti-ENaC incubation time was 90 minutes. The developed electrochemical immunosensor has a detection limit of 0.0372 ng/mL and a quantification limit of 0.124 ng/mL for the ENaC protein concentration range of 0.09375 to 1.0 ng/mL. Thus, the immunosensor generated from this study can be used to measure the concentration of normal urine samples and those of patients with hypertension.

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来源期刊
ADMET and DMPK
ADMET and DMPK Multiple-
CiteScore
4.40
自引率
0.00%
发文量
22
审稿时长
4 weeks
期刊介绍: ADMET and DMPK is an open access journal devoted to the rapid dissemination of new and original scientific results in all areas of absorption, distribution, metabolism, excretion, toxicology and pharmacokinetics of drugs. ADMET and DMPK publishes the following types of contributions: - Original research papers - Feature articles - Review articles - Short communications and Notes - Letters to Editors - Book reviews The scope of the Journal involves, but is not limited to, the following areas: - physico-chemical properties of drugs and methods of their determination - drug permeabilities - drug absorption - drug-drug, drug-protein, drug-membrane and drug-DNA interactions - chemical stability and degradations of drugs - instrumental methods in ADMET - drug metablic processes - routes of administration and excretion of drug - pharmacokinetic/pharmacodynamic study - quantitative structure activity/property relationship - ADME/PK modelling - Toxicology screening - Transporter identification and study
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