globalchange  > 影响、适应和脆弱性
项目编号: 1511194
项目名称:
UNS: A Versatile Optofluidic Platform for Multiplexed Detection of Cardiac Biomarkers in Blood
作者: Jianjun Wei
承担单位: University of North Carolina Greensboro
批准年: 2014
开始日期: 2015-06-15
结束日期: 2018-05-31
资助金额: USD306001
资助来源: US-NSF
项目类别: Standard Grant
国家: US
语种: 英语
特色学科分类: Engineering - Chemical, Bioengineering, Environmental, and Transport Systems
英文关键词: cardiovascular disease ; small molecule ; jianjun proposal ; single nanoscale unit ; 1511194the goal ; whole blood ; ratio detection ; human blood ; plasmonic waveguide ; early diagnosis ; size-exclusive delivery biomarker ; protein biomarker ; sensitive quantitation ; size-dependent sample delivery system ; high signal-to-noise ; novel platform ; cell separation ; unique metal film structure ; immunoassay format ; optical transmission
英文摘要: PI: Wei, Jianjun
Proposal: 1511194

The goal is to develop a novel platform that incorporates an optical transmission sensing scheme with an automated size-dependent sample delivery system in a single nanoscale unit. The results will lead to a chip-based, point-of-care (POC) technology for early diagnosis of cardiovascular disease (CVD).


This project will investigate a plasmonic nano-optofluidic (PNOF) platform to demonstrate its utility and versatility of in-situ cell separation and delivery of small molecules to the sensing area, and discriminative, sensitive quantitation of protein biomarkers in whole blood. Unique metal film structures will be used as plasmonic waveguides to tune the spectrum that enables ultrasensitive and high signal-to-noise (S/N) ratio detection. The array will be utilized to integrate with a microfluidic network to realize in-situ separation of cells and size-exclusive delivery biomarkers. The researchers will then adopt the immunoassay format and demonstrate delivery and discrimination of selected biomarkers in human blood.
资源类型: 项目
标识符: http://119.78.100.158/handle/2HF3EXSE/94389
Appears in Collections:影响、适应和脆弱性
气候减缓与适应

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Recommended Citation:
Jianjun Wei. UNS: A Versatile Optofluidic Platform for Multiplexed Detection of Cardiac Biomarkers in Blood. 2014-01-01.
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