利用分子印迹聚合物纳米颗粒对临床患者样本中的肌钙蛋白I生物标志物进行传感,以推进心血管疾病的医疗保健方法

IF 10.7 1区 生物学 Q1 BIOPHYSICS
Joshua Saczek , Oliver Jamieson , Jake McClements , Amy Dann , Rhiannon E. Johnson , Alexander D. Stokes , Robert D. Crapnell , Craig E. Banks , Francesco Canfarotta , Ioakim Spyridopoulos , Alan Thomson , Azfar Zaman , Katarina Novakovic , Marloes Peeters
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引用次数: 0

摘要

心肌肌钙蛋白I (cTnI)是心脏病发作诊断的重要蛋白生物标志物。本研究对一种新型生物传感装置进行了深入分析,该装置利用分子印迹聚合物纳米颗粒(nanoMIPs)检测心肌梗死后临床患者血清样本中的cTnI。这种基于热传递法的方法提供了比当前金标准更快的测量时间和相当于一滴血的样本量。生物标志物结合显示出与高灵敏度ELISA相当的性能,准确识别cTnI水平升高的患者(R2 = 0.893)。cTnI峰值浓度时间变化归因于血清复合物的异质性,不同的肌钙蛋白复合物大小可能产生不同的隔热水平。与已建立的患者数据库比较,我们的cTnI浓度与临床参数之间存在显著相关性(R2 = 0.855)。这强调了纳米omip传感器用于敏感cTnI检测的潜力,为心脏病发作后的生物标志物水平提供了见解。此外,我们的方法还提供了低成本和便携的额外好处,可以在患者的时间和地点进行测量。因此,它有可能成为心脏病发作治疗诊断途径的重要组成部分,最终降低医疗成本并改善患者的治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Troponin I biomarker sensing from clinical patient samples using molecularly imprinted polymer nanoparticles for advancing healthcare approaches in cardiovascular disease
Cardiac troponin I (cTnI) is a critical protein biomarker for heart attack diagnosis. This study presents a thorough analysis of a novel biosensing device utilizing molecularly imprinted polymer nanoparticles (nanoMIPs) for detecting cTnI in clinical patient serum samples post myocardial infarction. The methodology, based on the heat-transfer method approach, offers faster measurements times than the current gold standard and sample volumes equivalent to a single blood drop. Biomarker binding shows performance comparable to a high-sensitivity ELISA, accurately identifying patients with elevated cTnI levels (R2 = 0.893). The cTnI peak concentration time variations are attributed to heterogeneous serum complexes, with different troponin complex sizes potentially generating differing thermal insulation levels. Comparison with an established patient database demonstrates robust correlations between our cTnI concentrations and clinical parameters (R2 = 0.855). This underscores the potential of nanoMIP sensors for sensitive cTnI detection, providing insights into post-heart attack biomarker levels. Furthermore, our methodology presents the additional benefits of being low cost and portable enabling measurements at time and place of patients. Consequently, it holds the potential to become a vital part of the diagnostic pathway for heart attack treatment, ultimately reducing healthcare costs and improving patient outcomes.
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来源期刊
Biosensors and Bioelectronics
Biosensors and Bioelectronics 工程技术-电化学
CiteScore
20.80
自引率
7.10%
发文量
1006
审稿时长
29 days
期刊介绍: Biosensors & Bioelectronics, along with its open access companion journal Biosensors & Bioelectronics: X, is the leading international publication in the field of biosensors and bioelectronics. It covers research, design, development, and application of biosensors, which are analytical devices incorporating biological materials with physicochemical transducers. These devices, including sensors, DNA chips, electronic noses, and lab-on-a-chip, produce digital signals proportional to specific analytes. Examples include immunosensors and enzyme-based biosensors, applied in various fields such as medicine, environmental monitoring, and food industry. The journal also focuses on molecular and supramolecular structures for enhancing device performance.
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