Chitosan for Biofunctionalization of Microsystems

S. Koev, M. Powers, V. Badilita, H. Yi, W. Bentley, G. Payne, G. Rubloff, R. Ghodssi
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Abstract

We present the use of the polysaccharide chitosan for immobilizing biomolecules on microfabricated device surfaces. The main advantages of chitosan are its abundance of primary amine groups and its ability to be electrodeposited. Biomolecules are easily attached to chitosan 's amines by standard glutaraldehyde chemistry. The electrodeposition of chitosan allows accurate spatial and temporal control of biomolecule placement. We have demonstrated this biofunctionalization method for two different bioMEMS devices: a biophotonic sensor and a micromechanical biosensor. We have successfully assembled probe DNA on each of them and detected hybridization with target DNA as a demonstration of sensor operation. Here, we briefly present the fabrication procedure and testing results for both of these bioMEMS sensing devices
壳聚糖用于微系统的生物功能化
我们介绍了壳聚糖多糖在微加工器件表面固定化生物分子的应用。壳聚糖的主要优点是其丰富的伯胺基团和电沉积能力。通过标准戊二醛化学,生物分子很容易与壳聚糖胺结合。壳聚糖的电沉积可以对生物分子的位置进行精确的时空控制。我们已经在两种不同的bioMEMS设备上展示了这种生物功能化方法:生物光子传感器和微机械生物传感器。我们已经成功地将探针DNA组装在每一个上,并检测了与目标DNA的杂交,作为传感器操作的演示。在这里,我们简要地介绍了这两种bioMEMS传感装置的制造过程和测试结果
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