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    • 74. 发明授权
    • pH sensor and manufacturing method
    • pH传感器和制造方法
    • US08742470B2
    • 2014-06-03
    • US13600385
    • 2012-08-31
    • Matthias MerzCoenraad Cornelis TakRomano Hoofman
    • Matthias MerzCoenraad Cornelis TakRomano Hoofman
    • G01N27/403
    • G01N27/302G01N27/4148G01N27/4167G01N33/02G01N33/04G01N33/12H01L2224/48091H01L2924/1815Y10T29/49002H01L2924/00014
    • Disclosed is a pH sensor comprising a carrier (10) comprising a plurality of conductive tracks and an exposed conductive area (40) defining a reference electrode connected to one of said conductive tracks; a sensing device (30) mounted on the carrier and connected at least one other of said conductive tracks; an encapsulation (20) covering the carrier, said encapsulation comprising a first cavity (22) exposing a surface (32) of the sensing device and a second cavity (24) exposing the exposed conductive area, said second cavity comprising a reference electrode material (42) and an ion reservoir material (44) sharing at least one ion type with said reference electrode material, the reference electrode material being sandwiched between the exposed conductive area and the ion reservoir material. A method of manufacturing such a pH sensor is also disclosed.
    • 公开了一种pH传感器,其包括包括多个导电轨道的载体(10)和限定连接到所述导电轨道之一的参考电极的暴露导电区域(40) 感测装置(30),其安装在所述载体上并且连接至少另一个所述导电轨道; 覆盖所述载体的封装(20),所述封装包括暴露所述感测装置的表面(32)的第一空腔(22)和暴露所述暴露的导电区域的第二空腔(24),所述第二空腔包括参考电极材料 42)和与所述参考电极材料共享至少一种离子型离子储存器材料(44),所述参考电极材料夹在所述暴露的导电区域和所述离子储存器材料之间。 还公开了制造这种pH传感器的方法。
    • 76. 发明申请
    • FAD-CONJUGATED GLUCOSE DEHYDROGENASE GENE
    • FAD-结合葡萄糖脱氢酶基因
    • US20140027280A1
    • 2014-01-30
    • US13920445
    • 2013-06-18
    • Ikeda Food Research Co., Ltd
    • Takako YADAKoji MIYAMOTOMichinari HONDA
    • C12Q1/00
    • C12N9/0006C12Q1/006C12Q1/32C12Q1/54C12Y101/9901G01N27/301G01N27/302G01N27/3271G01N33/66G01N2333/902G01N2333/904Y10T29/49117
    • Disclosed herein are a gene (polynucleotide) encoding an FAD-conjugated glucose dehydrogenase which can be characterized by reactivity to glucose, thermal stability, substrate-recognition performance, and low activity for maltose; a process for the production of the enzyme using a transformant cell transfected with the gene; a method for the determination of glucose; a reagent composition for use in the determination of glucose; and a biosensor for use in the determination of glucose. An embodiment is a polynucleotide encoding an FAD-conjugated glucose dehydrogenase, comprising a polypeptide whose amino acid sequence comprises X1-X2-X3-X4-X5-X6, wherein X1 and X2 independently represent an aliphatic amino acid residue; X3 and X6 independently represent a branched amino acid residue; and X4 and X5 independently represent a heterocyclic amino acid residue or an aromatic amino acid residue.
    • 本文公开了编码FAD-缀合的葡萄糖脱氢酶的基因(多核苷酸),其可以表征为对葡萄糖的反应性,热稳定性,底物识别性能和对麦芽糖的低活性; 使用用该基因转染的转化体细胞来生产酶的方法; 一种测定葡萄糖的方法; 用于测定葡萄糖的试剂组合物; 以及用于测定葡萄糖的生物传感器。 一个实施方案是编码FAD-缀合的葡萄糖脱氢酶的多核苷酸,其包含其氨基酸序列包含X 1 -X 2 -X 3 -X 4 -X 5 -X 6的多肽,其中X 1和X 2独立地表示脂族氨基酸残基; X3和X6独立地表示支链氨基酸残基; X4和X5独立地表示杂环氨基酸残基或芳香族氨基酸残基。
    • 79. 发明申请
    • REFERENCE ELECTRODE
    • 参考电极
    • US20130153417A1
    • 2013-06-20
    • US13819320
    • 2011-08-25
    • Manabu ShibataYasukazu Iwamoto
    • Manabu ShibataYasukazu Iwamoto
    • G01N27/30
    • G01N27/302G01N27/301
    • A reference electrode for improving a product life cycle without using a gelled hydrophobic ionic liquid having a prescribed hardness or viscosity and without having a large thickness so as to be difficult to manufacture is provided. The reference electrode is provided with a housing for accommodating an internal electrode, a filler for electrically connecting the internal electrode, and a sample liquid. The filler is formed having a layer between the internal electrode and an opening formed in the housing for contacting the sample liquid and the filler. The filler includes a first layer including a water soluble electrolytic solution formed to be in contact with the internal electrode a second layer including a hydrophobic ionic liquid formed to be in contact with the first layer; and a third layer including a gelled hydrophobic ionic liquid formed in the opening so as to be in contact with the second layer.
    • 提供了一种用于改善产品寿命周期的参比电极,而不使用具有规定硬度或粘度并且不具有大厚度以致难以制造的凝胶状疏水性离子液体。 参考电极设置有用于容纳内部电极的壳​​体,用于电连接内部电极的填充物和样品液体。 填料形成在内部电极和形成在壳体中的开口之间的层,用于接触样品液体和填料。 填料包括第一层,其包括形成为与内部电极接触的水溶性电解液,第二层包括形成为与第一层接触的疏水性离子液体; 以及第三层,其包括在所述开口中形成的与所述第二层接触的凝胶状疏水性离子液体。