纳米材料传感器表面设计:新冠肺炎诊断平台

Eliete A. Alvin, A. Borges, R. D. P. Martins, M. Lemes, R. M. Barbosa, C. J. Oliveira, Diógenes Meneses, B. G. Lucca, N. Dantas, V. R. Júnior, R. P. A. Balvedi, F. C. Abreu, Marcos Vinícius da Silva, Anielle C. A. Silva
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摘要

COVID-19大规模检测对于确定患者管理策略、选择最佳临床管理以及制定控制病毒传播的策略和免疫策略至关重要。因此,寻找能够实现快速、可靠、低成本诊断的设备是至关重要的,这些设备可以从实验室转移到床边,比如生物传感器。这些设备可以帮助选择正确的临床管理,以尽量减少导致感染患者发展成更严重疾病的因素。利用纳米材料修饰生物传感器的表面,以增加这些设备的灵敏度和生物功能,使高质量的纳米技术平台成为可能。除了诊断益处之外,促进监测抗sars - cov -2抗体的纳米技术平台可能是确定COVID-19发作后保护性免疫反应丧失的关键,这可能导致再次感染的机会,以及如何使用它们来评估和监测免疫策略的成功。这些药物已经开始大规模使用它们的保护范围和持续时间需要确定。因此,在本章中,我们将介绍纳米材料在传感器表面设计中的使用及其功能,从而在COVID-19诊断的各个方面产生纳米技术平台。
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Sensor Surface Design with NanoMaterials: A New Platform in the Diagnosis of COVID-19
Mass testing for COVID-19 is essential to defining patient management strategies, choosing the best clinical management, and dimensioning strategies for controlling viral dissemination and immunization strategies. Thus, it is of utmost importance to search for devices that allow a quick and reliable diagnosis of low cost that can be transposed from the bench to the bedside, such as biosensors. These devices can help choose the correct clinical management to minimize factors that lead to infected patients developing more severe diseases. The use of nanomaterials to modify biosensors’ surfaces to increase these devices’ sensitivity and their biofunctionality enables high-quality nanotechnological platforms. In addition to the diagnostic benefits, nanotechnological platforms that facilitate the monitoring of anti-SARS-CoV-2 antibodies may be the key to determining loss of protective immune response after an episode of COVID-19, which leads to a possible chance of reinfection, as well as how they can be used to assess and monitor the success of immunization strategies, which are beginning to be administered on a large scale and that the extent and duration of their protection will need to be determined. Therefore, in this chapter, we will cover nanomaterials’ use and their functionalities in the surface design of sensors, thus generating nanotechnological platforms in the various facets of the diagnosis of COVID-19.
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