Department of Electronic Engineering, Gachon University, Seongnam 13120, Republic of Korea.
Department of Semiconductor Engineering, Gachon University, Seongnam 13120, Republic of Korea.
Biosensors (Basel). 2024 Oct 10;14(10):492. doi: 10.3390/bios14100492.
The modern healthcare system strives to provide patients with more comfortable and less invasive experiences, focusing on noninvasive and painless diagnostic and treatment methods. A key priority is the early diagnosis of life-threatening diseases, which can significantly improve patient outcomes by enabling treatment at earlier stages. While most patients must undergo diagnostic procedures before beginning treatment, many existing methods are invasive, time-consuming, and inconvenient. To address these challenges, electrochemical-based wearable and point-of-care (PoC) sensing devices have emerged, playing a crucial role in the noninvasive, continuous, periodic, and remote monitoring of key biomarkers. Due to their numerous advantages, several wearable and PoC devices have been developed. In this focused review, we explore the advancements in metal-organic frameworks (MOFs)-based wearable and PoC devices. MOFs are porous crystalline materials that are cost-effective, biocompatible, and can be synthesized sustainably on a large scale, making them promising candidates for sensor development. However, research on MOF-based wearable and PoC sensors remains limited, and no comprehensive review has yet to synthesize the existing knowledge in this area. This review aims to fill that gap by emphasizing the design of materials, fabrication methodologies, sensing mechanisms, device construction, and real-world applicability of these sensors. Additionally, we underscore the importance and potential of MOF-based wearable and PoC sensors for advancing healthcare technologies. In conclusion, this review sheds light on the current state of the art, the challenges faced, and the opportunities ahead in MOF-based wearable and PoC sensing technologies.
现代医疗保健系统致力于为患者提供更舒适、侵入性更小的体验,专注于非侵入性和无痛的诊断和治疗方法。一个关键的优先事项是对危及生命的疾病进行早期诊断,这可以通过在早期阶段进行治疗来显著改善患者的预后。虽然大多数患者在开始治疗前必须进行诊断程序,但许多现有的方法具有侵入性、耗时且不方便。为了解决这些挑战,基于电化学的可穿戴和即时护理 (PoC) 感测设备已经出现,在非侵入性、连续、定期和远程监测关键生物标志物方面发挥着至关重要的作用。由于它们具有许多优点,已经开发出了几种可穿戴和 PoC 设备。在本重点综述中,我们探讨了基于金属有机框架 (MOF) 的可穿戴和 PoC 设备的进展。MOFs 是多孔晶体材料,具有成本效益、生物相容性,并且可以可持续地大规模合成,因此是传感器开发的有前途的候选材料。然而,基于 MOF 的可穿戴和 PoC 传感器的研究仍然有限,并且尚未有综合该领域现有知识的全面综述。本综述旨在通过强调这些传感器的材料设计、制造方法、感测机制、器件结构和实际应用,填补这一空白。此外,我们强调了基于 MOF 的可穿戴和 PoC 传感器在推进医疗保健技术方面的重要性和潜力。总之,本综述阐明了基于 MOF 的可穿戴和 PoC 感测技术的当前现状、面临的挑战和未来的机遇。