Wei Xiaoke, Ren Chuanlu, Liu Bingwei, Peng Yan, Zhuang Songlin
Shidong Hospital Affiliated to University of Shanghai for Science and Technology, Terahertz Technology Innovation Research Institute, Terahertz Spectrum and Imaging Technology Cooperative Innovation Center, Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology, Shanghai 200093, China.
Department of Clinical Laboratory, The 904th Hospital of Joint Logistic Support Force of PLA, Wuxi 214044, China.
Fundam Res. 2024 Nov 21;5(2):571-585. doi: 10.1016/j.fmre.2024.11.008. eCollection 2025 Mar.
Terahertz metamaterial biosensors combine terahertz time-domain spectroscopy with metamaterial sensing to provide a sensitive detection platform for a variety of targets, including biological molecules, proteins, cells, and viruses. These biosensors are characterized by their rapid response, sensitivity, non-destructive, label-free operation, minimal sample requirement, and user-friendly design, which also allows for integration with various technical approaches. Advancing beyond traditional biosensors, terahertz metamaterial biosensors facilitate rapid and non-destructive trace detection in biomedical applications, contributing to timely diagnosis and early screening of diseases. In this paper, the theoretical basis and advanced progress of these biosensors are discussed in depth, focusing on three key areas: improving the sensitivity and specificity, and reducing the influence of water absorption in biological samples. This paper also analyzes the potential and future development of these biosensors for expanded applications. It highlights their potential for multi-band tuning, intelligent operations, and flexible, wearable biosensor applications. This review provides a valuable reference for the follow-up research and application of terahertz metamaterial biosensors in the field of biomedical detection.
太赫兹超材料生物传感器将太赫兹时域光谱技术与超材料传感相结合,为包括生物分子、蛋白质、细胞和病毒在内的各种目标提供了一个灵敏的检测平台。这些生物传感器具有响应迅速、灵敏度高、无损、无需标记操作、样品需求量小以及用户友好型设计等特点,还能与各种技术方法集成。超越传统生物传感器,太赫兹超材料生物传感器在生物医学应用中促进了快速且无损的痕量检测,有助于疾病的及时诊断和早期筛查。本文深入讨论了这些生物传感器的理论基础和前沿进展,重点关注三个关键领域:提高灵敏度和特异性,以及减少生物样品中水分吸收的影响。本文还分析了这些生物传感器在扩展应用方面的潜力和未来发展。它突出了它们在多波段调谐、智能操作以及灵活可穿戴生物传感器应用方面的潜力。这篇综述为太赫兹超材料生物传感器在生物医学检测领域的后续研究和应用提供了有价值的参考。