Selvaraj Meraline, B S Sreeja, Aly Saad Aly Mohamed
Department of Electronics & Communication Engineering, College of Engineering Guindy, Anna University, Chennai 600025, India.
Department of Electronics & Communication Engineering, College of Engineering Guindy, Anna University, Chennai 600025, India.
Methods. 2025 Feb;234:54-66. doi: 10.1016/j.ymeth.2024.12.001. Epub 2024 Dec 3.
Biosensors have many life sciences-related applications, particularly in the healthcare sector. They are employed in a wide range of fields, including drug development, food quality management, early diagnosis of diseases, and environmental monitoring. Terahertz-based biosensing has shown great promise as a label-free, non-invasive, and non-contact method of detecting biological substances. THz Spectroscopy has achieved a remarkable advancement in biomolecule recognition providing a rapid, highly sensitive, and non-destructive approach for various biomedical applications. The significance of THz-based biosensors and the broad spectrum of biomolecules that can be detected and analyzed with biosensors are reviewed in this work. Additionally, this work summarizes several techniques that were previously reported to improve the sensitivity and selectivity of these biosensors. Furthermore, an in-depth comparison between previously developed biosensors with an emphasis on their performance is presented and highlighted in the current review. Lastly, the challenges, the potential, and the future prospects of THz-based biosensing technology are critically addressed.
生物传感器有许多与生命科学相关的应用,特别是在医疗保健领域。它们被应用于广泛的领域,包括药物开发、食品质量管理、疾病早期诊断和环境监测。基于太赫兹的生物传感作为一种检测生物物质的无标记、非侵入性和非接触方法,已显示出巨大的潜力。太赫兹光谱在生物分子识别方面取得了显著进展,为各种生物医学应用提供了一种快速、高灵敏度和非破坏性的方法。本文综述了基于太赫兹的生物传感器的重要性以及可通过生物传感器检测和分析的广泛生物分子。此外,本文总结了先前报道的几种提高这些生物传感器灵敏度和选择性的技术。此外,本综述还对先前开发的生物传感器进行了深入比较,重点突出了它们的性能。最后,对基于太赫兹的生物传感技术面临的挑战、潜力和未来前景进行了批判性探讨。