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    • 51. 发明申请
    • ION EXCHANGEABLE MIXTURE AND METHOD OF PRODUCING THE SAME
    • 离子交换混合物及其制造方法
    • US20120329891A1
    • 2012-12-27
    • US13605503
    • 2012-09-06
    • Hun-joo LEEJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • Hun-joo LEEJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • B01J39/18
    • C08J5/2218B01J39/20B01J41/14B01J47/016B01J47/12B01L3/5027C08J5/20
    • An ion exchangeable mixture containing a polymeric compound consisting of an ion exchange resin, an acrylamide mixture containing at least one bisacrylamide and at least one acrylamide, and a copolymer obtained by reacting the polymeric compound with the acrylamide mixture, and a method of producing the same are provided. The ion exchangeable membrane produced by using the ion exchangeable mixture has significantly smaller electric resistance than conventional ion exchangeable membranes, and has excellent selective permeability because the ion exchangeable membrane is electrically charged. The ion exchangeable membrane can be produced under very mild production conditions, and thus can be produced very easily. Furthermore, the ion exchangeable membrane can be also formed into film during a crosslinking reaction in a solvent of water, and thus is advantageous in that the ion exchangeable membrane can be freely produced into desired sizes, shapes and forms.
    • 含有由离子交换树脂,含有至少一种双丙烯酰胺和至少一种丙烯酰胺的丙烯酰胺混合物组成的聚合物的离子交换性混合物和通过使聚合物与丙烯酰胺混合物反应得到的共聚物及其制造方法 被提供。 通过使用离子交换性混合物制造的离子交换膜的电阻比常规的离子交换膜的电阻小得多,并且由于可离子交换膜带电而具有优异的选择性渗透性。 离子交换膜可以在非常温和的生产条件下生产,因此可以非常容易地生产。 此外,在水的溶剂中的交联反应期间,也可以将离子交换膜形成为膜,因此有利的是可离子交换膜可以自由地制成所需的尺寸,形状和形状。
    • 52. 发明授权
    • Ion exchangeable mixture and method of producing the same
    • 可离子交换混合物及其制备方法
    • US08263671B2
    • 2012-09-11
    • US13086741
    • 2011-04-14
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • B01J49/00C08J5/20C01B31/16
    • C08J5/2218B01J39/20B01J41/14B01J47/016B01J47/12B01L3/5027C08J5/20
    • An ion exchangeable mixture containing a polymeric compound consisting of an ion exchange resin, an acrylamide mixture containing at least one bisacrylamide and at least one acrylamide, and a copolymer obtained by reacting the polymeric compound with the acrylamide mixture, and a method of producing the same are provided. The ion exchangeable membrane produced by using the ion exchangeable mixture has significantly smaller electric resistance than conventional ion exchangeable membranes, and has excellent selective permeability because the ion exchangeable membrane is electrically charged. The ion exchangeable membrane can be produced under very mild production conditions, and thus can be produced very easily. Furthermore, the ion exchangeable membrane can be also formed into film during a crosslinking reaction in a solvent of water, and thus is advantageous in that the ion exchangeable membrane can be freely produced into desired sizes, shapes and forms.
    • 含有由离子交换树脂,含有至少一种双丙烯酰胺和至少一种丙烯酰胺的丙烯酰胺混合物组成的聚合物的离子交换性混合物和通过使聚合物与丙烯酰胺混合物反应得到的共聚物及其制造方法 被提供。 通过使用离子交换性混合物制造的离子交换膜的电阻比常规的离子交换膜的电阻小得多,并且由于可离子交换膜带电而具有优异的选择性渗透性。 离子交换膜可以在非常温和的生产条件下生产,因此可以非常容易地生产。 此外,在水的溶剂中的交联反应期间,也可以将离子交换膜形成为膜,因此有利的是可离子交换膜可以自由地制成所需的尺寸,形状和形状。
    • 53. 发明授权
    • Sensing switch and detecting method using the same
    • 感应开关及使用其的检测方法
    • US07981666B2
    • 2011-07-19
    • US12833095
    • 2010-07-09
    • Kyu-tae YooJoon-ho KimJun-hong MinSung-ouk JungJi-na NamgoongKui-hyun KimJeo-young ShimKak Namkoong
    • Kyu-tae YooJoon-ho KimJun-hong MinSung-ouk JungJi-na NamgoongKui-hyun KimJeo-young ShimKak Namkoong
    • C12M3/00
    • G01N33/54373
    • Provided are a sensing switch and a sensing method using the same. The sensing switch includes: a substrate; a supporter on the substrate; a sensing plate that is connected to a side of the supporter and is in parallel with the substrate by a predetermined distance; a receptor binding region on an upper surface of an end portion of the sensing plate; an electric or magnetic field generation device that induces deflection of the sensing plate when a receptor bound to the receptor binding region is selectively bound to an electrically or magnetically active ligand; and a pair of switching electrodes that are separated by a predetermined distance and is connected when the sensing plate contacts the substrate due to the deflection of the sensing plate. A target material need not be labelled, a signal processing of a fluorescent or electrical detection signal using an analysis apparatus is not required, and a signal can be directly decoded by confirming whether a current flows through the switch.
    • 提供了一种感测开关和使用该感测开关的感测方法。 感测开关包括:基板; 底物上的支撑物; 感测板,其与所述支撑体的一侧连接并且与所述基板平行预定距离; 在感测板的端部的上表面上的受体结合区域; 当与受体结合区结合的受体选择性地结合到电或磁性活性配体时,引起感测板偏转的电场或磁场产生装置; 以及一对分离预定距离的开关电极,并且当感测板由于感测板的偏转而与基板接触时被连接。 目标材料不需要标注,不需要使用分析装置的荧光或电检测信号的信号处理,并且可以通过确认电流是否流过开关直接解码信号。
    • 57. 发明授权
    • Method of isolating and purifying nucleic acids using immobilized hydrogel or PEG-hydrogel copolymer
    • 使用固定化水凝胶或PEG-水凝胶共聚物分离和纯化核酸的方法
    • US07803539B2
    • 2010-09-28
    • US11297783
    • 2005-12-07
    • Chang-eun YooJoon-ho KimKyu-youn HwangHun-joo LeeHee-kyun LimJun-hong Min
    • Chang-eun YooJoon-ho KimKyu-youn HwangHun-joo LeeHee-kyun LimJun-hong Min
    • C12Q1/68C12M1/34C07H21/00
    • C07H21/04
    • Provided is a method of isolating and purifying nucleic acids using an immobilized hydrogel or polyethylene glycol (PEG)-hydrogel copolymer. The method includes: immobilizing a functional group-containing hydrogel or PEG-hydrogel copolymer on a substrate; adding a mixed sample solution containing a salt and nucleic acids to the hydrogel- or PEG-hydrogel copolymer-immobilized substrate to bind the nucleic acids to the hydrogel or the PEG-hydrogel copolymer; washing the nucleic acid-bound hydrogel or PEG-hydrogel copolymer; and eluting the nucleic acids from the hydrogel or the PEG-hydrogel copolymer using an elution solvent. Therefore, binding and elution of nucleic acids can be performed even with no addition of a separate chemical substance, and an effect on a subsequent process such as PCR can be minimized. Furthermore, the amount and intensity for binding nucleic acids can be adjusted according to PEG concentration, and the presence of a hydrogel compound on a substrate enables patterning.
    • 提供了使用固定的水凝胶或聚乙二醇(PEG) - 水凝胶共聚物来分离和纯化核酸的方法。 该方法包括:将含官能团的水凝胶或PEG-水凝胶共聚物固定在基材上; 将含有盐和核酸的混合样品溶液加入到水凝胶或PEG-水凝胶共聚物固定的底物中,以将核酸与水凝胶或PEG-水凝胶共聚物结合; 洗涤核酸结合的水凝胶或PEG-水凝胶共聚物; 并使用洗脱溶剂从水凝胶或PEG-水凝胶共聚物中洗脱核酸。 因此,即使没有添加单独的化学物质也可以进行核酸的结合和洗脱,并且可以最小化对后续过程(例如PCR)的影响。 此外,可以根据PEG浓度调节结合核酸的量和强度,并且在基材上存在水凝胶化合物能够进行图案化。
    • 59. 发明申请
    • Apparatus for regulating salt concentration using electrodialysis, lab-on-a-chip including the same, and method of regulating salt concentration using the apparatus
    • 使用电渗析法调节盐浓度的装置,包括该盐浓度的实验室的方法以及使用该装置调节盐浓度的方法
    • US20060266650A1
    • 2006-11-30
    • US11440872
    • 2006-05-25
    • Jung-im HanYoung-sun LeeJoon-ho Kim
    • Jung-im HanYoung-sun LeeJoon-ho Kim
    • B01D61/42
    • B01D61/422B01D61/46B01L3/5027G01N2001/4011
    • An apparatus for regulating salt concentration, a lab-on-a-chip including the same and a method of regulating salt concentration using the apparatus are provided. The apparatus includes: a reaction chamber that is defined by a cation exchange membrane and an anion exchange membrane and is selected from the group consisting of a biomolecule extraction chamber, an amplification chamber, a hybridization chamber, and a detection chamber; a first electrode chamber that is defined by the anion exchange membrane and a first electrode and includes an ion exchange medium; and a second electrode chamber that is defined by the cation exchange membrane and a second electrode and includes an ion exchange medium. Even without injecting solutions with different salt concentrations into the reaction chamber by operating pumps and valves for each operation stage, the salt concentration can be reversibly regulated in situ by adjusting the polarity, intensity and application time of a voltage.
    • 提供了一种调节盐浓度的装置,包括该盐浓度的实验室,以及使用该装置调节盐浓度的方法。 该装置包括:由阳离子交换膜和阴离子交换膜限定的反应室,其选自生物分子提取室,扩增室,杂交室和检测室; 由阴离子交换膜和第一电极限定并包括离子交换介质的第一电极室; 以及由阳离子交换膜和第二电极限定并包括离子交换介质的第二电极室。 即使在每个操作阶段通过操作泵和阀都不会将具有不同盐浓度的溶液注入反应室中,可以通过调节电压的极性,强度和施加时间来原位调节盐浓度。