Noah Naumih M, Ndangili Peter M
School of Pharmacy and Health Sciences, United States International University-Africa, P.O. Box 14634-00800, Nairobi, Kenya.
Department of Chemical Science and Technology (DCST), Technical University of Kenya, P.O. Box 52428-00200, Nairobi, Kenya.
J Anal Methods Chem. 2019 Oct 23;2019:2179718. doi: 10.1155/2019/2179718. eCollection 2019.
In order to provide better-quality health care, it is very important that high standards of health care management are achieved by making timely decisions based on rapid diagnostics, smart data analysis, and informatics analysis. Point-of-care testing ensures fast detection of analytes near to the patients facilitating a better disease diagnosis, monitoring, and management. It also enables quick medical decisions since the diseases can be diagnosed at an early stage which leads to improved health outcomes for the patients enabling them to start early treatment. In the recent past, various potential point-of-care devices have been developed and they are paving the way to next-generation point-of-care testing. Biosensors are very critical components of point-of-care devices since they are directly responsible for the bioanalytical performance of an essay. As such, they have been explored for their prospective point-of-care applications necessary for personalized health care management since they usually estimate the levels of biological markers or any chemical reaction by producing signals mainly associated with the concentration of an analyte and hence can detect disease causing markers such as body fluids. Their high selectivity and sensitivity have allowed for early diagnosis and management of targeted diseases; hence, facilitating timely therapy decisions and combination with nanotechnology can improve assessment of the disease onset and its progression and help to plan for treatment of many diseases. In this review, we explore how nanotechnology has been utilized in the development of nanosensors and the current trends of these nanosensors for point-of-care diagnosis of various diseases.
为了提供更高质量的医疗保健,通过基于快速诊断、智能数据分析和信息学分析做出及时决策来实现高标准的医疗管理非常重要。即时检测可确保在患者附近快速检测分析物,有助于更好地进行疾病诊断、监测和管理。由于疾病能够在早期得到诊断,从而改善患者的健康状况并使他们能够尽早开始治疗,因此即时检测还能促成快速的医疗决策。近年来,已经开发出了各种潜在的即时检测设备,它们正在为下一代即时检测铺平道路。生物传感器是即时检测设备的关键组成部分,因为它们直接决定了检测方法的生物分析性能。因此,人们对其在个性化医疗管理所需的潜在即时检测应用进行了探索,因为它们通常通过产生主要与分析物浓度相关的信号来估计生物标志物的水平或任何化学反应,从而能够检测诸如体液等致病标志物。它们的高选择性和灵敏度使得能够对目标疾病进行早期诊断和管理;因此,促进了及时的治疗决策,并且与纳米技术相结合可以改善对疾病发作及其进展的评估,并有助于规划多种疾病的治疗方案。在这篇综述中,我们探讨了纳米技术如何被用于纳米传感器的开发以及这些纳米传感器用于各种疾病即时诊断的当前趋势。