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Fundamentals and commercial aspects of nanobiosensors in point-of-care clinical diagnostics

机译:即时临床诊断中纳米生物传感器的基础知识和商业方面

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摘要

Among various problems faced by mankind, health-related concerns are prevailing since long which are commonly found in the form of infectious diseases and different metabolic disorders. The clinical cure and management of such abnormalities are greatly dependent on the availability of their diagnoses. The conventional diagnostics used for such purposes are extremely powerful; however, most of these are limited by time-consuming protocols and require higher volume of test sample, etc. A new evolving technology called “biosensor” in this context shows an enormous potential for an alternative diagnostic device, which constantly compliments the conventional diagnoses. In this review, we have summarized different kinds of biosensors and their fundamental understanding with various state-of-the-art examples. A critical examination of different types of biosensing mechanisms is also reported highlighting the advantages of electrochemical biosensors for its great potentials in next-generation commercially viable modules. In recent years, a number of nanomaterials are extensively used to enhance not only the performance of biosensing mechanism, but also obtain robust, cheap, and fabrication-friendly durable mechanism. Herein, we have summarized the importance of nanomaterials in biosensing mechanism, their syntheses as well as characterization techniques. Subsequently, we have discussed the probe fabrication processes along with various techniques for assessing its analytical performances and potentials for commercial viability.
机译:在人类面临的各种问题中,长期以来,与健康有关的问题一直存在,这些问题通常以传染病和不同的代谢紊乱形式出现。这种异常的临床治愈和处理在很大程度上取决于其诊断的可用性。用于此类目的的常规诊断功能非常强大。但是,这些方法中的大多数受费时协议的限制,并且需要更大数量的测试样品等。在这种情况下,一种不断发展的新技术称为“生物传感器”,显示出替代诊断设备的巨大潜力,该诊断设备将不断补充传统诊断方法。在这篇综述中,我们用各种最新的例子总结了不同种类的生物传感器及其基本知识。还报道了对不同类型的生物传感机制的严格检查,突出了电​​化学生物传感器的优势,因为其在下一代商业可行模块中具有巨大潜力。近年来,许多纳米材料不仅用于增强生物传感机制的性能,而且还获得了坚固,便宜且易于制造的耐用机制。在这里,我们总结了纳米材料在生物传感机制,其合成以及表征技术中的重要性。随后,我们讨论了探针制造过程以及评估其分析性能和商业可行性潜力的各种技术。

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