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    • 2. 发明申请
    • METHOD FOR MICROCHANNEL SURFACE MODIFICATION
    • 微通道表面改性方法
    • WO2007047644A2
    • 2007-04-26
    • PCT/US2006040505
    • 2006-10-13
    • UNIV CALIFORNIATSENG HSIAN-RONGSUI GUODONGWANG JINJI
    • TSENG HSIAN-RONGSUI GUODONGWANG JINJI
    • B05D3/00
    • B81C1/00206B01L3/5027
    • A method for functionalizing microfluidic channels with specific characteristics by the introduction of hydroxyl groups onto the surface area of the channel using a solution of an acid and a peroxide followed by a reaction of an essentially pure siloxane based reagent and a functional group. Chemically modified channel surfaces can be designed to prevent non-specific binding or interaction of biological samples with the channel surfaces; surface wetting or dewetting with the control of the hydrophobicity and hydrophilicity of the channel surfaces; confer solvent resistance by attaching inert molecules to the interior channel; and tethering molecules that have available amine, thiol, isocyanato and isothiocyanato or similar groups to permit the attachment of biomolecules to channel surfaces.
    • 通过使用酸和过氧化物的溶液,然后基本上纯的基于硅氧烷的试剂和官能团的反应,通过在通道的表面区域上引入羟基来官能化具有特定特性的微流体通道的方法。 化学修饰的通道表面可以设计成防止生物样品与通道表面的非特异性结合或相互作用; 表面润湿或去湿,以控制通道表面的疏水性和亲水性; 通过将惰性分子附着到内部通道来赋予耐溶剂性; 和具有可用胺,硫醇,异氰酸酯基和异硫氰酸酯或类似基团的分子,以允许将生物分子附着到通道表面。
    • 5. 发明申请
    • MICROFLUIDIC CHIPS AND SYSTEMS FOR ANALYZING PROTEIN EXPRESSION, AND METHODS OF USE THEREOF
    • 用于分析蛋白质表达的微流感胶囊和系统及其使用方法
    • WO2009067521A1
    • 2009-05-28
    • PCT/US2008/084044
    • 2008-11-19
    • FLORIDA ATLANTIC UNIVERSITYSUI, Guodong
    • SUI, Guodong
    • B01D57/02B01D59/42B01D59/50B01D61/42
    • G01N33/54366B01L3/5027B01L3/502715B01L2200/10B01L2300/0654B01L2300/0816B01L2300/0864B01L2300/0867B01L2300/087B01L2400/0421B01L2400/0481B01L2400/0655G01N27/44791
    • Microfluidic chips, systems including at least one integrated microfluidic chip operably connected to hardware (e.g., docking device, high voltage electrodes, portable fluorescence microscope, computer, etc.), and methods for analyzing peptides (e.g., toxins), proteins (e.g., cancer biomarkers, recombinant human growth hormone, recombinant human erythropoietin), and protein expression in biological samples (e.g., human serum, urine, or tissue, marine organism, seafood, etc.) have been developed. On a single microfluidic chip as described herein, several sequential processes for analyzing a protein (e.g., cell culturing, cell lysis, protein enrichment, protein labeling, and protein detection) can be performed in an automated fashion. The microfluidic chips, systems, and methods described herein provide real-time, high-throughput, highly-specific detection of proteins such as recombinant erythropoietin, recombinant human growth hormone and marine biotoxins, as well as important biomarkers in the cancer signaling pathway network for early and precise cancer diagnosis.
    • 微流控芯片,包括可操作地连接到硬件(例如,对接装置,高压电极,便携式荧光显微镜,计算机等)的至少一个集成微流控芯片的系统,以及用于分析肽(例如毒素),蛋白质(例如, 已经开发了生物样品(例如,人血清,尿液或组织,海洋生物,海产品等)中的蛋白质表达(例如癌症生物标记物,重组人生长激素,重组人促红细胞生成素)。 在如本文所述的单个微流体芯片上,可以以自动方式执行用于分析蛋白质(例如细胞培养,细胞裂解,蛋白质富集,蛋白质标记和蛋白质检测)的若干顺序方法。 本文所述的微流控芯片,系统和方法提供蛋白质的实时,高通量,高度特异性检测,例如重组促红细胞生成素,重组人生长激素和海洋生物毒素,以及癌症信号传导途径网络中的重要生物标志物 早期和精确的癌症诊断。