Erdem Özgecan, Eş Ismail, Akceoglu Garbis Atam, Saylan Yeşeren, Inci Fatih
UNAM-National Nanotechnology Research Center, Bilkent University, Ankara 06800, Turkey.
Department of Chemistry, Hacettepe University, Ankara 06800, Turkey.
Biosensors (Basel). 2021 Aug 25;11(9):296. doi: 10.3390/bios11090296.
Chronic diseases (CDs) are noncommunicable illnesses with long-term symptoms accounting for ~70% of all deaths worldwide. For the diagnosis and prognosis of CDs, accurate biomarker detection is essential. Currently, the detection of CD-associated biomarkers is employed through complex platforms with certain limitations in their applicability and performance. There is hence unmet need to present innovative strategies that are applicable to the point-of-care (PoC) settings, and also, provide the precise detection of biomarkers. On the other hand, especially at PoC settings, microneedle (MN) technology, which comprises micron-size needles arranged on a miniature patch, has risen as a revolutionary approach in biosensing strategies, opening novel horizons to improve the existing PoC devices. Various MN-based platforms have been manufactured for distinctive purposes employing several techniques and materials. The development of MN-based biosensors for real-time monitoring of CD-associated biomarkers has garnered huge attention in recent years. Herein, we summarize basic concepts of MNs, including microfabrication techniques, design parameters, and their mechanism of action as a biosensing platform for CD diagnosis. Moreover, recent advances in the use of MNs for CD diagnosis are introduced and finally relevant clinical trials carried out using MNs as biosensing devices are highlighted. This review aims to address the potential use of MNs in CD diagnosis.
慢性病(CDs)是具有长期症状的非传染性疾病,占全球所有死亡人数的约70%。对于慢性病的诊断和预后,准确检测生物标志物至关重要。目前,检测与慢性病相关的生物标志物是通过复杂的平台进行的,这些平台在适用性和性能方面存在一定局限性。因此,迫切需要提出适用于即时检测(PoC)场景的创新策略,并且能够精确检测生物标志物。另一方面,特别是在即时检测场景中,微针(MN)技术作为一种生物传感策略中的革命性方法应运而生,该技术由排列在微型贴片上的微米级针头组成,为改进现有的即时检测设备开辟了新视野。基于微针的各种平台已采用多种技术和材料制造出来用于不同目的。近年来,用于实时监测与慢性病相关生物标志物的基于微针的生物传感器的开发受到了极大关注。在此,我们总结了微针的基本概念,包括微制造技术、设计参数及其作为慢性病诊断生物传感平台的作用机制。此外,还介绍了微针在慢性病诊断应用中的最新进展,最后强调了使用微针作为生物传感设备进行的相关临床试验。本综述旨在探讨微针在慢性病诊断中的潜在用途。