Micro-patterning of nanosensor elements using layer-by-layer self-assembly, avidin-biotin chemistry, and photolithography

K.K. Kondabatni, F. Hua, T. Cui, Y. Lvov, M. Mcshane
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Abstract

The miniaturization of biosensors has resulted in the need to develop new techniques to pattern various sensor elements with high resolution and fast response time. This paper describes the selective deposition of various sensor elements on glass as well as on silicon substrate by combining layer-by-layer electrostatic self-assembly, photolithography and avidin-biotin chemistry. Two methods have been developed for this selective patterning. The first method includes selective UV radiation of a coated photobiotin on glass substrate and covalent bonding of avidin-layered fluorescent nanoparticles to the irradiated areas. The second method involves lithography and self-assembly in a modified lift-off process. In both cases, the epifluorescence microscope images show high spatial resolution of patterned areas and excellent surface coverage. These patterns will be further developed for monitoring cell growth in tissue scaffolds.
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利用逐层自组装、亲和素-生物素化学和光刻技术制作纳米传感器元件的微图像化
生物传感器的小型化导致需要开发具有高分辨率和快速响应时间的各种传感器元件的新技术。本文介绍了利用逐层静电自组装、光刻和亲和生物素化学相结合的方法,在玻璃和硅衬底上选择性地沉积各种传感器元件。已经开发了两种方法用于这种选择性模式。第一种方法包括在玻璃基板上涂覆光生物素的选择性紫外辐射和亲和素层状荧光纳米颗粒与照射区域的共价键合。第二种方法涉及光刻和自组装在一个改进的升空过程。在这两种情况下,荧光显微镜图像显示高空间分辨率的图案区域和良好的表面覆盖。这些模式将进一步发展,以监测组织支架中的细胞生长。
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