CenBRAIN Neurotech Center of Excellence, School of Engineering, Westlake University, Hangzhou 310030, China.
Institute of Advanced Technology, Westlake Institute for Advanced Study, Hangzhou 310024, China.
Biosensors (Basel). 2024 Aug 9;14(8):385. doi: 10.3390/bios14080385.
A label-free biosensor based on a tunable MEMS metamaterial structure is proposed in this paper. The adopted structure is a one-dimensional array of metamaterial gratings with movable and fixed fingers. The moving unit of the optical detection system is a component of the MEMS structure, driven by the surface stress effect. Thus, these suspended optical nanoribbons can be moved and change the grating pattern by the biological bonds that happened on the modified cantilever surface. Such structural variations lead to significant changes in the optical response of the metamaterial system under illuminating angled light and subsequently shift its resonance wavelength spectrum. As a result, the proposed biosensor shows appropriate analytical characteristics, including the mechanical sensitivity of S = 11.55 μm/Nm, the optical sensitivity of S = Δλ/Δd = 0.7 translated to S = Δλ/Δσ = 8.08 μm/Nm, and the quality factor of Q = 102.7. Also, considering the importance of multi-biomarker detection, a specific design of the proposed topology has been introduced as an array for identifying different biomolecules. Based on the conducted modeling and analyses, the presented device poses the capability of detecting multiple biomarkers of disease at very low concentrations with proper precision in fluidic environments, offering a suitable bio-platform for lab-on-chip structures.
本文提出了一种基于可调谐 MEMS 超材料结构的无标记生物传感器。所采用的结构是具有可动和固定指的一维超材料光栅阵列。光学检测系统的移动单元是 MEMS 结构的一部分,由表面应力效应驱动。因此,这些悬空的光学纳米带可以通过发生在改性悬臂梁表面的生物键移动并改变光栅图案。这种结构变化导致超材料系统在倾斜光照射下的光学响应发生显著变化,并随后使其共振波长谱发生位移。因此,所提出的生物传感器具有适当的分析特性,包括机械灵敏度 S = 11.55 μm/Nm、光学灵敏度 S = Δλ/Δd = 0.7 转换为 S = Δλ/Δσ = 8.08 μm/Nm 和品质因数 Q = 102.7。此外,考虑到多生物标志物检测的重要性,已经引入了所提出拓扑结构的特定设计作为用于识别不同生物分子的阵列。基于进行的建模和分析,所提出的器件具有在流体环境中以适当的精度检测非常低浓度的多种疾病生物标志物的能力,为芯片实验室结构提供了合适的生物平台。