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    • 11. 发明授权
    • Biomolecule chip and fabrication method thereof
    • 生物分子芯片及其制造方法
    • US07741105B2
    • 2010-06-22
    • US11329240
    • 2006-01-10
    • Young-il KimMoon-chul LeeJung-ho KangTae-sik Park
    • Young-il KimMoon-chul LeeJung-ho KangTae-sik Park
    • B81B7/04
    • G01N33/544
    • Disclosed is a biomolecule chip and a fabrication method thereof. The biomolecule chip of the invention includes: a substrate; an insulating layer formed on the substrate; an adhesive layer formed on the insulating layer; a seed layer formed on the adhesive layer; an opening patterned at a predetermined location within the adhesive layer, the seed layer and the electroplating layer; and a biomolecule immobilized layer formed on the electroplating layer, the electroplating layer comprising a plasma-treated electroplating layer prior to the formation of the biomolecule immobilized layer. Accordingly, the immobilization of biomolecules onto the surface can be done more effectively by modifying the surface of the substrate in favor of biomolecules.
    • 公开了一种生物分子芯片及其制造方法。 本发明的生物分子芯片包括:基材; 形成在所述基板上的绝缘层; 形成在所述绝缘层上的粘合剂层; 形成在粘合剂层上的种子层; 在粘合剂层内的预定位置图案化的开口,种子层和电镀层; 以及形成在所述电镀层上的生物分子固定层,所述电镀层在形成所述生物分子固定化层之前包含等离子体处理的电镀层。 因此,通过改变基质表面有利于生物分子,可以更有效地进行生物分子固定在表面上。
    • 12. 发明申请
    • Biomolecule chip and fabrication method thereof
    • 生物分子芯片及其制造方法
    • US20060154242A1
    • 2006-07-13
    • US11329240
    • 2006-01-10
    • Young-il KimMoon-chul LeeJung-ho KangTae-sik Park
    • Young-il KimMoon-chul LeeJung-ho KangTae-sik Park
    • C12Q1/70C12Q1/68G01N33/53H01L21/00
    • G01N33/544
    • Disclosed is a biomolecule chip and a fabrication method thereof The biomolecule chip of the invention includes: a substrate; an insulating layer formed on the substrate; an adhesive layer formed on the insulating layer; a seed layer formed on the adhesive layer; an opening patterned at a predetermined location within the adhesive layer, the seed layer and the electroplating layer; and a biomolecule immobilized layer formed on the electroplating layer, the electroplating layer comprising a plasma-treated electroplating layer prior to the formation of the biomolecule immobilized layer. Accordingly, the immobilization of biomolecules onto the surface can be done more effectively by modifying the surface of the substrate in favor of biomolecules.
    • 公开了一种生物分子芯片及其制造方法。本发明的生物分子芯片包括:基板; 形成在所述基板上的绝缘层; 形成在所述绝缘层上的粘合剂层; 形成在粘合剂层上的种子层; 在粘合剂层内的预定位置图案化的开口,种子层和电镀层; 以及形成在所述电镀层上的生物分子固定层,所述电镀层在形成所述生物分子固定化层之前包含等离子体处理的电镀层。 因此,通过改变基质表面有利于生物分子,可以更有效地进行生物分子固定在表面上。
    • 15. 发明授权
    • Biomolecule bonding detection apparatus using RF wireless energy transmission and method thereof
    • 使用RF无线能量传输的生物分子结合检测装置及其方法
    • US07933720B2
    • 2011-04-26
    • US11315526
    • 2005-12-21
    • Tae-sik ParkYoung-il KimJung-ho Kang
    • Tae-sik ParkYoung-il KimJung-ho Kang
    • G01N33/48G01N31/00C12M1/00
    • G01N27/3276G01N33/48785
    • An apparatus for detecting a biomolecule bonding using a radio frequency (RF) wireless energy transmission and a method thereof are disclosed. The method includes transmitting RF energy to a sensor module having one or more probe biomolecules immobilized thereon, and determining a first energy charging time of the sensor module, the first energy charging time representing the amount of time for the sensor to be completely charged by the transmitted RF energy, prior to mixing of the one or more probe biomolecules with one or more target sample biomolecules. A second energy charging time of the sensor module is determined, the second energy charging time representing the amount of time for the sensor to be completely charged by the transmitted RF energy, following mixing of the one or more probe biomolecules with one or more target biomolecule sample. A determination of whether biomolecule bonding has occurred is based on a variation of the first and second energy charging times.
    • 公开了一种使用射频(RF)无线能量传输检测生物分子结合的装置及其方法。 该方法包括将RF能量传送到具有固定在其上的一个或多个探针生物分子的传感器模块,以及确定传感器模块的第一能量充电时间,第一能量充电时间表示传感器完全充电的时间量 在将一种或多种探针生物分子与一种或多种靶样品生物分子混合之前,传输RF能量。 确定传感器模块的第二能量充电时间,第二能量充电时间表示在将一个或多个探针生物分子与一个或多个靶生物分子混合之后传输的RF能量完全充电的传感器的时间量 样品。 是否发生生物分子结合的确定是基于第一和第二能量充电时间的变化。
    • 20. 发明申请
    • Biomolecule bonding detection apparatus using wireless antenna and method thereof
    • 使用无线天线的生物分子接合检测装置及其方法
    • US20060154300A1
    • 2006-07-13
    • US11327032
    • 2006-01-05
    • Tae-sik ParkYoung-il KimJung-ho Kang
    • Tae-sik ParkYoung-il KimJung-ho Kang
    • C12M1/34G01N33/53G08C19/04
    • G01N33/54373
    • Disclosed is a biomolecule binding detection apparatus and a method thereof, which detects biomolecule bonding by measuring change in characteristics of a test signal transmitted by an antenna on which probe biomolecules are immobilized. The biomolecule bonding detection apparatus includes a transmitting unit on which probe biomolecules are immobilized, the probe biomolecules configured for detection of specific gene information included in sample biomolecules to be analyzed, the transmitting unit further configured for signal transmission. A receiving unit is configured for detecting biomolecule bonding by comparison of selected characteristics of a test signal transmitted from the transmitting unit before and after mixing of the probe biomolecules and the sample biomolecules.
    • 公开了一种生物分子结合检测装置及其方法,其通过测量由固定有探针生物分子的天线发射的测试信号的特性的变化来检测生物分子结合。 所述生物分子结合检测装置包括固定有探针生物分子的发送单元,所述探针生物分子被配置为检测包含在待分析的样品生物分子中的特定基因信息,所述发送单元还被配置为进行信号传输。 接收单元被配置为通过比较在探针生物分子和样品生物分子混合之前和之后从发送单元发送的测试信号的选定特征来检测生物分子结合。