School of Engineering, RMIT University, La Trobe Street, Melbourne, VIC 3004, Australia.
Sensors (Basel). 2023 Jun 7;23(12):5406. doi: 10.3390/s23125406.
Micro- and nanotechnology-enabled sensors have made remarkable advancements in the fields of biomedicine and the environment, enabling the sensitive and selective detection and quantification of diverse analytes. In biomedicine, these sensors have facilitated disease diagnosis, drug discovery, and point-of-care devices. In environmental monitoring, they have played a crucial role in assessing air, water, and soil quality, as well as ensured food safety. Despite notable progress, numerous challenges persist. This review article addresses recent developments in micro- and nanotechnology-enabled sensors for biomedical and environmental challenges, focusing on enhancing basic sensing techniques through micro/nanotechnology. Additionally, it explores the applications of these sensors in addressing current challenges in both biomedical and environmental domains. The article concludes by emphasizing the need for further research to expand the detection capabilities of sensors/devices, enhance sensitivity and selectivity, integrate wireless communication and energy-harvesting technologies, and optimize sample preparation, material selection, and automated components for sensor design, fabrication, and characterization.
微纳技术增强的传感器在生物医学和环境领域取得了显著进展,能够实现对各种分析物的敏感和选择性检测和定量。在生物医学领域,这些传感器促进了疾病诊断、药物发现和即时检测设备的发展。在环境监测中,它们在评估空气质量、水质和土壤质量以及确保食品安全方面发挥了关键作用。尽管取得了显著的进展,但仍存在许多挑战。本文综述了微纳技术增强的传感器在生物医学和环境挑战方面的最新进展,重点关注通过微/纳技术增强基本传感技术。此外,还探讨了这些传感器在解决生物医学和环境领域当前挑战方面的应用。文章最后强调需要进一步研究以扩大传感器/设备的检测能力,提高灵敏度和选择性,集成无线通信和能量收集技术,并优化传感器设计、制造和特性分析的样品制备、材料选择和自动化组件。