发明授权
US08524061B2 On-chip hybridization coupled with ITP based purification for fast sequence specific identification
有权
片上杂交与基于ITP的纯化相结合,用于快速序列特异性鉴定
- 专利标题: On-chip hybridization coupled with ITP based purification for fast sequence specific identification
- 专利标题(中): 片上杂交与基于ITP的纯化相结合,用于快速序列特异性鉴定
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申请号: US13373773申请日: 2011-11-29
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公开(公告)号: US08524061B2公开(公告)日: 2013-09-03
- 发明人: Paul J. Utz , Juan G. Santiago , Michael G. Kattah , Alexandre Persat
- 申请人: Paul J. Utz , Juan G. Santiago , Michael G. Kattah , Alexandre Persat
- 申请人地址: US CA Palo Alto
- 专利权人: The Board of Trustees of the Leland Stanford Junior University
- 当前专利权人: The Board of Trustees of the Leland Stanford Junior University
- 当前专利权人地址: US CA Palo Alto
- 代理机构: Lumen Patent Firm
- 主分类号: G01N27/447
- IPC分类号: G01N27/447 ; G01N27/26
摘要:
Isotachophoresis (ITP) can be employed to simultaneously focus the target and ligand of an assay into the same ITP focus zone. The target and ligand can bind to each other in the ITP focus zone, and then the resulting bound complex can be detected (e.g., by fluorescence). The sensitivity of this approach can be greatly increased by the enhanced concentration of both target and ligand that ITP provides in the focus zone. Since ITP can be performed quickly, the resulting assay is both rapid and sensitive. Markers of bacterial urinary tract infections have been experimentally detected at clinically relevant concentrations with this approach. MicroRNA sequences have also been profiled with this approach, which is clinically relevant because MicroRNA is expected to provide useful markers for disease. In one experiment, miR-122 in human kidney and liver was detected and quantified.
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