具有成本效益的心脏肌钙蛋白I安培免疫传感器是向可负担得起的急性心肌梗死即时诊断迈出的一步

IF 5.4 Q1 CHEMISTRY, ANALYTICAL
Niamh Docherty , Lilian Collins , Susan Pang , Ying Fu , Stuart Milne , Damion Corrigan
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引用次数: 0

摘要

早期检测心肌肌钙蛋白I对急性心肌梗死的诊断至关重要。采用低成本的薄膜金电极阵列与廉价的ELISA抗体和试剂制备了两个心脏肌钙蛋白I安培免疫传感器。在金电极表面构建hrp标记的夹心免疫复合物,通过计时电流法测量电极表面产生的TMB+量,间接定量cTnI。首先,使用物理吸附法将捕获抗体固定在电极上,观察到309pg /mL的LOD,对该系统进行评估。随后,第二种传感器变体使用磺酰lc - spdp作为交联剂来控制抗体固定化,从而提高了灵敏度,LOD为109 pg/mL。化学吸附传感器的性能优于市售ELISA试剂盒的工作范围(8000-125 pg/mL),证明了增强抗体固定化和电化学检测临床相关水平心肌肌钙蛋白i的能力。安培免疫传感器具有重要的优势,包括成本效益高,使用简单,与市售试剂兼容。这些特点使传感器易于用户访问和易于制造。随着对复杂样品的灵敏度和性能的进一步提高,该传感器可用于简化急性心肌梗死的诊断,减轻胸痛患者对医疗保健系统的负担。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cost-effective Amperometric Immunosensor for cardiac troponin I as a step towards affordable point-of-care diagnosis of acute myocardial infarction

Cost-effective Amperometric Immunosensor for cardiac troponin I as a step towards affordable point-of-care diagnosis of acute myocardial infarction
Early detection of cardiac troponin I in blood is vital for acute myocardial infarction diagnosis. A low-cost thin film gold electrode array was used with affordable ELISA antibodies and reagents to fabricate two cardiac troponin I amperometric immunosensors. The HRP-labelled sandwich immunocomplex was constructed on the gold electrode surface, and chronoamperometry was used to quantify cTnI indirectly by measuring the amount of TMB+ produced at the electrode surface. First, the system was evaluated using a physisorption approach to immobilise the capture antibody to the electrode with a 309 pg/mL LOD observed. Subsequently, a second sensor variant was produced using sulfo-LC-SPDP as a crosslinker to control antibody immobilisation, which resulted in an improved sensitivity with an LOD of 109 pg/mL. The chemisorption sensor outperformed the working range of the commercially available ELISA kit used (8000–125 pg/mL), demonstrating the power of enhanced antibody immobilisation and electrochemical detection for clinically relevant levels of cardiac troponin I. Amperometric immunosensors offer vital advantages including being cost-effective, simple to use, and compatible with commercially available reagents. These features make the sensor accessible to users and easy to manufacture. With further improvements to sensitivity and performance in complex samples, the sensor could be deployed to streamline acute myocardial infarction diagnosis and reduce the burden of chest pain patients on the healthcare system.
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来源期刊
Sensing and Bio-Sensing Research
Sensing and Bio-Sensing Research Engineering-Electrical and Electronic Engineering
CiteScore
10.70
自引率
3.80%
发文量
68
审稿时长
87 days
期刊介绍: Sensing and Bio-Sensing Research is an open access journal dedicated to the research, design, development, and application of bio-sensing and sensing technologies. The editors will accept research papers, reviews, field trials, and validation studies that are of significant relevance. These submissions should describe new concepts, enhance understanding of the field, or offer insights into the practical application, manufacturing, and commercialization of bio-sensing and sensing technologies. The journal covers a wide range of topics, including sensing principles and mechanisms, new materials development for transducers and recognition components, fabrication technology, and various types of sensors such as optical, electrochemical, mass-sensitive, gas, biosensors, and more. It also includes environmental, process control, and biomedical applications, signal processing, chemometrics, optoelectronic, mechanical, thermal, and magnetic sensors, as well as interface electronics. Additionally, it covers sensor systems and applications, µTAS (Micro Total Analysis Systems), development of solid-state devices for transducing physical signals, and analytical devices incorporating biological materials.
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