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High sensitivity plasmonic biosensor based on nanoimprinted quasi 3D nanosquares for cell detection

机译:基于纳米压印的准3D纳米正方形的高灵敏度等离子体生物传感器用于细胞检测

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摘要

Quasi three-dimensional (3D) plasmonic nanostructures consisting of Au nanosquares on top of SU-8 nanopillars and Au nanoholes on the bottom were developed and fabricated using nanoimprint lithography with simultaneous thermal and UV exposure. These 3D plasmonic nanostructures were used to detect cell concentration of lung cancer A549 cells, retinal pigment epithelial (RPE) cells, and breast cancer MCF-7 cells. Nanoimprint technology has the advantage of producing high uniformity plasmonic nanostructures for such biosensors. Multiple resonance modes were observed in these quasi 3D plasmonic nanostructures. The hybrid coupling of localized surface plasmon resonances and Fabry-Perot cavity modes in the quasi 3D nanostructures resulted in high sensitivity of 496 nm/refractive index unit. The plasmonic resonance peak wavelength and sensitivity could be tuned by varying the Au thickness. Resonance peak shifts for different cells at the same concentration were distinct due to their different cell area and confluency. The cell concentration detection limit covered a large range of 5 x 10(2) to 1 x 10(7) cells ml(-1) with these new plasmonic nanostructures. They also provide a large resonance peak shift of 51 nm for as little as 0.08 cells mm(-2) of RPE cells for high sensitivity cell detection.
机译:使用同时在热和紫外线下曝光的纳米压印光刻技术,开发并制造了由SU-8纳米柱顶部的Au纳米方块和底部的Au纳米孔组成的准三维(3D)等离子体纳米结构。这些3D等离子体纳米结构用于检测肺癌A549细胞,视网膜色素上皮(RPE)细胞和乳腺癌MCF-7细胞的细胞浓度。纳米压印技术具有为这种生物传感器产生高均匀度的等离子体纳米结构的优点。在这些准3D等离子体纳米结构中观察到多种共振模式。准3D纳米结构中局部表面等离子体激元共振和Fabry-Perot腔模的混合耦合导致496 nm /折射率单位的高灵敏度。可以通过改变金的厚度来调整等离子体共振峰的波长和灵敏度。相同浓度下不同细胞的共振峰移动因细胞面积和融合度不同而不同。具有这些新的等离激元纳米结构的细胞浓度检测限涵盖了5 x 10(2)到1 x 10(7)细胞ml(-1)的大范围。它们还为低灵敏度的RPE细胞0.08细胞mm(-2)提供了51 nm的大共振峰位移。

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