George Kerry Rout, Ukhurebor Kingsley Eghonghon, Kumari Swati, Maurya Ganesh Kumar, Patra Sushmita, Panigrahi Bijayananda, Majhi Sanatan, Rout Jyoti Ranjan, Rodriguez-Torres María Del Pilar, Das Gitishree, Shin Han-Seung, Patra Jayanta Kumar
Department of Biotechnology, Utkal University, Vani Vihar, Bhubaneswar, Odisha 751004, India.
Climatic/Environmental/Telecommunication Unit, Department of Physics, Edo University Iyamho, P.B.M. 04, Auchi, 312101, Edo State, Nigeria.
Biomater Sci. 2021 May 18;9(10):3576-3602. doi: 10.1039/d0bm02164d.
The outstretched applications of biosensors in diverse domains has become the reason for their attraction for scientific communities. Because they are analytical devices, they can detect both quantitative and qualitative biological components through the generation of detectable signals. In the recent past, biosensors witnessed significant changes and developments in their design as well as features. Nanotechnology has revolutionized sensing phenomena by increasing biodiagnostic capacity in terms of specificity, size, and cost, resulting in exceptional sensitivity and flexibility. The steep increase of non-communicable diseases across the world has emerged as a matter of concern. In parallel, the abrupt outbreak of communicable diseases poses a serious threat to mankind. For decreasing the morbidity and mortality associated with various communicable and non-communicable diseases, early detection and subsequent treatment are indispensable. Detection of different biological markers generates quantifiable signals that can be electrochemical, mass-based, optical, thermal, or piezoelectric. Speculating on the incumbent applicability and versatility of nano-biosensors in large disciplines, this review highlights different types of biosensors along with their components and detection mechanisms. Moreover, it deals with the current advancements made in biosensors and the applications of nano-biosensors in detection of various non-communicable and communicable diseases, as well as future prospects of nano-biosensors for diagnostics.
生物传感器在不同领域的广泛应用已成为科学界对其产生吸引力的原因。由于它们是分析设备,能够通过产生可检测信号来检测定量和定性的生物成分。最近,生物传感器在设计和功能方面经历了重大变化和发展。纳米技术通过在特异性、尺寸和成本方面提高生物诊断能力,彻底改变了传感现象,从而带来了卓越的灵敏度和灵活性。全球范围内非传染性疾病的急剧增加已成为一个令人担忧的问题。与此同时,传染病的突然爆发对人类构成了严重威胁。为了降低与各种传染病和非传染病相关的发病率和死亡率,早期检测和后续治疗必不可少。对不同生物标志物的检测会产生可量化的信号,这些信号可以是电化学、基于质量、光学、热学或压电的。鉴于纳米生物传感器在众多学科中的现有适用性和多功能性,本综述重点介绍了不同类型的生物传感器及其组件和检测机制。此外,它还讨论了生物传感器目前取得的进展以及纳米生物传感器在检测各种非传染性和传染性疾病中的应用,以及纳米生物传感器在诊断方面的未来前景。