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基于等离子体的生物传感器,用于区分不同肽突变状态。

Plasmon based biosensor for distinguishing different peptides mutation states.

机构信息

Nanostructures, Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genoa, Italy.

出版信息

Sci Rep. 2013;3:1792. doi: 10.1038/srep01792.

Abstract

Periodic and reproducible gold nanocuboids with various matrix dimensions and with different inter-particle gaps were fabricated by means of top-down technique. Rhodamine 6G was used as a probe molecule to optimize the design and the fabrication of the cuboid nanostructures. The electric field distribution for the nanocuboids with varying matrix dimensions/inter-particle gap was also investigated. These SERS devices were employed as biosensors through the investigation of both myoglobin and wild/mutated peptides. The results demonstrate the probing and the screening of wild/mutated BRCA1 peptides, thus opening a path for the fabrication of simple and cheap SERS device capable of early detection of several diseases.

摘要

周期性和可重复的金纳米立方体形貌具有不同的基质尺寸和不同的颗粒间间隙,是通过自上而下的技术制备的。罗丹明 6G 被用作探针分子来优化立方体形貌纳米结构的设计和制备。还研究了具有不同基质尺寸/颗粒间间隙的纳米立方体形貌的电场分布。这些 SERS 器件通过对肌红蛋白和野生/突变肽的研究被用作生物传感器。结果表明,可以探测和筛选野生/突变的 BRCA1 肽,从而为制造能够早期检测多种疾病的简单廉价 SERS 器件开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64d7/3647166/ba45ec470ad5/srep01792-f1.jpg

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