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Development of the Troponin Detection System Based on the Nanostructure

机译:基于纳米结构的肌钙蛋白检测系统的开发

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摘要

During the last 30 years, the World Health Organization (WHO) reported a gradual increase in the number of patients with cardiovascular disease (CVD), not only in developed but also in developing countries. In particular, acute myocardial infarction (AMI) is one of the severe CVDs because of the high death rate, damage to the body, and various complications. During these harmful effects, rapid diagnosis of AMI is key for saving patients with CVD in an emergency. The prompt diagnosis and proper treatment of patients with AMI are important to increase the survival rate of these patients. To treat patients with AMI quickly, detection of a CVD biomarker at an ultra-low concentration is essential. Cardiac troponins (cTNs), cardiac myoglobin (cMB), and creatine kinase MB are typical biomarkers for AMI detection. An increase in the levels of those biomarkers in blood implies damage to cardiomyocytes and thus is related to AMI progression. In particular, cTNs are regarded as a gold standard biomarker for AMI diagnosis. The conventional TN detection system for detection of AMI requires long measurement time and is labor-intensive and tedious. Therefore, the demand for sensitive and selective TN detection techniques is increasing at present. To meet this demand, several approaches and methods have been applied to develop a TN detection system based on a nanostructure. In the present review, the authors reviewed recent advances in TN biosensors with a focus on four detection systems: (1) An electrochemical (EC) TN nanobiosensor, (2) field effect transistor (FET)-based TN nanobiosensor, (3) surface plasmon resonance (SPR)-based TN nanobiosensor and (4) surface enhanced Raman spectroscopy (SERS)-based TN nanobiosensor.
机译:在过去的30年中,世界卫生组织(WHO)报告称,不仅在发达国家,而且在发展中国家,心血管疾病(CVD)患者的数量也在逐渐增加。尤其是,急性心肌梗塞(AMI)由于死亡率高,对身体的损害以及各种并发症而成为严重的CVD之一。在这些有害影响期间,快速诊断AMI是在紧急情况下挽救CVD患者的关键。对AMI患者的及时诊断和适当治疗对于提高这些患者的存活率很重要。为了快速治疗AMI患者,必须检测超低浓度的CVD生物标志物。心肌肌钙蛋白(cTNs),心肌肌红蛋白(cMB)和肌酸激酶MB是用于AMI检测的典型生物标志物。血液中这些生物标志物水平的升高暗示了心肌细胞的损害,因此与AMI进展有关。特别地,cTN被认为是AMI诊断的金标准生物标志物。用于检测AMI的常规TN检测系统需要较长的测量时间,并且劳动强度大且繁琐。因此,目前对灵敏和选择性的TN检测技术的需求正在增加。为了满足该需求,已经应用了几种方法和方法来开发基于纳米结构的TN检测系统。在本综述中,作者回顾了TN生物传感器的最新进展,重点是四个检测系统:(1)电化学(EC)TN纳米生物传感器,(2)基于场效应晶体管(FET)的TN纳米生物传感器,(3)表面基于等离子共振(SPR)的TN纳米生物传感器和(4)基于表面增强拉曼光谱(SERS)的TN纳米生物传感器。

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