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    • 42. 发明授权
    • Method for producing alkoxyindanone derivative
    • 制备烷氧基茚满酮衍生物的方法
    • US08163962B2
    • 2012-04-24
    • US12742873
    • 2008-11-14
    • Tetsuya OoyamaTakashi OnozawaShin IkedaYoshinobu Suzuki
    • Tetsuya OoyamaTakashi OnozawaShin IkedaYoshinobu Suzuki
    • C07C45/61
    • C07C45/80C07C2602/08C07C49/67
    • [Problems to be Solved]The present invention aims to provide a method for efficiently producing a high-purity alkoxyindanone derivative while maintaining an industrially superior volumetric efficiency.[Solution]Provided is a method for producing an alkoxyindanone derivative represented by a general formula in FIG. 2 (wherein R represents an alkoxy group containing 1 to 6 carbon atoms and n represents an integer of 1 to 4), comprising reacting an alkoxyphenylpropionic acid derivative represented by a general formula in FIG. 1 (wherein R and n are as defined above) with a condensing agent, adding an organic solvent to the resulting reaction mixture, and subsequently decomposing the condensing agent with an aqueous alkaline solution.
    • [待解决的问题]本发明的目的在于提供一种有效地制造高纯度烷氧基茚满酮衍生物的方法,同时保持了工业上优异的体积效率。 [解决方案]提供一种制备图1中通式所示的烷氧基茚满酮衍生物的方法。 2(其中R表示含有1至6个碳原子的烷氧基,n表示1至4的整数),包括使由图1中的通式表示的烷氧基苯基丙酸衍生物反应。 1(其中R和n如上定义)与缩合剂反应,向所得反应混合物中加入有机溶剂,随后用碱性水溶液分解缩合剂。
    • 45. 发明申请
    • Biosensor
    • 生物传感器
    • US20050175509A1
    • 2005-08-11
    • US10515602
    • 2003-12-19
    • Takahiro NakaminamiShin IkedaToshihiko Yoshioka
    • Takahiro NakaminamiShin IkedaToshihiko Yoshioka
    • C12Q1/00G01N27/30
    • C12Q1/006C12Q1/004G01N2333/904
    • The present invention relates to a biosensor which comprises an electrode system including at least one pair of electrodes, at least one insulating base plate for supporting the electrode system, a first reaction layer provided at least on a working electrode of the electrode system, including an organic compound having a functional group capable of bonding or being adsorbed to an electrode and a hydrophobic hydrocarbon group, a second reaction layer provided on the first reaction layer, including an amphiphilic lipid capable of bonding or being adsorbed to a hydrophobic portion of the first reaction layer, and a reagent system carried in a two-component membrane composed of the first and second reaction layers, including at least membrane-binding type pyrroquinoline quinone-dependent glucose dehydrogenase and an electron mediator.
    • 本发明涉及一种生物传感器,其包括电极系统,该电极系统包括至少一对电极,至少一个用于支撑电极系统的绝缘基板,至少设置在电极系统的工作电极上的第一反应层, 具有能够键合或吸附到电极和疏水性烃基的官能团的有机化合物,设置在第一反应层上的第二反应层,包括能够键合或吸附到第一反应的疏水部分的两亲性脂质 以及由第一反应层和第二反应层构成的双组分膜中携载的至少包含膜结合型吡喹啉醌依赖性葡萄糖脱氢酶和电子介体的试剂系统。
    • 46. 发明授权
    • Method for measuring hematocrit value of blood sample, method for measuring concentration of analyte in blood sample, sensor chip and sensor unit
    • 测定血液样品血细胞比容值的方法,血样中分析物浓度测定方法,传感器芯片和传感器单元
    • US08691072B2
    • 2014-04-08
    • US12377514
    • 2007-10-17
    • Masaki FujiwaraShin IkedaTakahiro Nakaminami
    • Masaki FujiwaraShin IkedaTakahiro Nakaminami
    • G01N27/26
    • G01N27/3274G01N27/3272G01N27/413
    • Voltage is applied across a counter electrode and a working electrode, with which a blood sample is in contact, in such a state that an oxidant in a redox substance is not substantially in contact with a working electrode but is in contact with a counter electrode and a reductant is not substantially in contact with the counter electrode but is in contact with the working electrode, whereby the reductant and the oxidant are respectively oxidized and reduced to measure current produced upon the oxidation and reduction. According to the above constitution, while lowering the voltage applied across the working electrode and the counter electrode, the Hct value of the blood sample can be measured stably with a satisfactory detection sensitivity. This measurement can be carried out with a sensor chip comprising a working electrode (11), a counter electrode (12), and a blood sample holding part (14) having branch parts (18a, 18b). A first reagent (13) consisting essentially of an oxidant in a redox substance is disposed in contact with the surface of a counter electrode which faces the branch part (18b), and a second reagent (19) consisting essentially of a reductant is disposed in contact with the surface of a working electrode that faces the branch part (18a).
    • 在氧化还原物质中的氧化剂基本上不与工作电极接触但与对电极接触的状态下,跨越对置电极和与血液样品接触的工作电极施加电压, 还原剂基本上不与对电极接触,而是与工作电极接触,由此还原剂和氧化剂分别被氧化和还原,以测量在氧化和还原时产生的电流。 根据上述结构,在降低施加在工作电极和对电极两端的电压的同时,能够以良好的检测灵敏度稳定地测定血液样品的Hct值。 该测量可以用包括工作电极(11),对电极(12)和具有分支部分(18a,18b)的血液样本保持部分(14)的传感器芯片进行。 基本上由氧化还原物质中的氧化剂组成的第一试剂(13)被设置成与面对分支部分(18b)的对电极的表面接触,并且基本上由还原剂组成的第二试剂(19)设置在 与面向分支部(18a)的工作电极的表面接触。
    • 48. 发明授权
    • Method of measuring hematocrit (Hct), sensor used in the method, and measuring device
    • 测量血细胞比容(Hct),方法中使用的传感器和测量装置的方法
    • US08088271B2
    • 2012-01-03
    • US10578988
    • 2004-12-03
    • Masaki FujiwaraTeppei ShinnoShin Ikeda
    • Masaki FujiwaraTeppei ShinnoShin Ikeda
    • G01N27/26G01N33/487
    • G01N27/3274
    • The present invention provides a method of electrochemically measuring a hematocrit (Hct) value using a sensor, capable of achieving excellent measurement accuracy and reliability and also provides a sensor used in the method. The method of electrochemically measuring a hematocrit (Hct) value of blood include: providing an electrode system having a working electrode (11) and a counter electrode (12), in which a redox substance is provided on the counter electrode (12) but not on the working electrode (11); supplying blood to the electrode system; applying a voltage to the electrode system in this state to cause an oxidation current or a reduction current to flow between the working electrode (11) and the counter electrode (12); detecting the oxidation current or the reduction current; and determining a Hct value based on a value of the detected current.
    • 本发明提供一种使用传感器电化学测量血细胞比容(Hct)值的方法,其能够实现优异的测量精度和可靠性,并且还提供了该方法中使用的传感器。 电化学测量血液血细胞比容(Hct)值的方法包括:提供具有工作电极(11)和对电极(12)的电极系统,其中在对电极(12)上设置氧化还原物质 在工作电极(11)上; 向电极系统供应血液; 在该状态下向电极系统施加电压,使得氧化电流或还原电流在工作电极(11)和对电极(12)之间流动。 检测氧化电流或还原电流; 以及基于检测到的电流的值确定Hct值。
    • 49. 发明申请
    • METHOD FOR MEASURING HEMATOCRIT VALUE OF BLOOD SAMPLE, METHOD FOR MEASURING CONCENTRATION OF ANALYTE IN BLOOD SAMPLE, SENSOR CHIP AND SENSOR UNIT
    • 测量血液样本血液值的方法,测量血液样品分析仪浓度,传感器芯片和传感器单元的方法
    • US20100243476A1
    • 2010-09-30
    • US12377514
    • 2007-10-17
    • Masaki FujiwaraShin IkedaTakahiro Nakaminami
    • Masaki FujiwaraShin IkedaTakahiro Nakaminami
    • G01N27/26G01N33/50
    • G01N27/3274G01N27/3272G01N27/413
    • Voltage is applied across a counter electrode and a working electrode, with which a blood sample is in contact, in such a state that an oxidant in a redox substance is not substantially in contact with a working electrode but is in contact with a counter electrode and a reductant is not substantially in contact with the counter electrode but is in contact with the working electrode, whereby the reductant and the oxidant are respectively oxidized and reduced to measure current produced upon the oxidation and reduction. According to the above constitution, while lowering the voltage applied across the working electrode and the counter electrode, the Hct value of the blood sample can be measured stably with a satisfactory detection sensitivity. This measurement can be carried out with a sensor chip comprising a working electrode (11), a counter electrode (12), and a blood sample holding part (14) having branch parts (18a, 18b). A first reagent (13) consisting essentially of an oxidant in a redox substance is disposed in contact with the surface of a counter electrode which faces the branch part (18b), and a second reagent (19) consisting essentially of a reductant is disposed in contact with the surface of a working electrode that faces the branch part (18a).
    • 在氧化还原物质中的氧化剂基本上不与工作电极接触但与对电极接触的状态下,跨越对置电极和与血液样品接触的工作电极施加电压, 还原剂基本上不与对电极接触,而是与工作电极接触,由此还原剂和氧化剂分别被氧化和还原,以测量在氧化和还原时产生的电流。 根据上述结构,在降低施加在工作电极和对电极两端的电压的同时,能够以良好的检测灵敏度稳定地测定血液样品的Hct值。 该测量可以用包括工作电极(11),对电极(12)和具有分支部分(18a,18b)的血液样本保持部分(14)的传感器芯片进行。 基本上由氧化还原物质中的氧化剂组成的第一试剂(13)被设置成与面对分支部分(18b)的对电极的表面接触,并且基本上由还原剂组成的第二试剂(19)设置在 与面向分支部(18a)的工作电极的表面接触。
    • 50. 发明授权
    • Method of measuring blood component and sensor used in the method
    • 方法测量血液成分和传感器的方法
    • US07641785B2
    • 2010-01-05
    • US10954020
    • 2004-09-28
    • Teppei ShinnoShin Ikeda
    • Teppei ShinnoShin Ikeda
    • G01N27/327
    • C12Q1/001C12Q1/006G01N27/3274G01N33/66G01N33/721
    • A sensor for blood component analysis that can correct the effect of a hematocrit easily is provided. The sensor includes an analysis portion including a working electrode, a counter electrode, and a reagent portion. The reagent portion includes an oxidoreductase that reacts with the blood component and a mediator, and the blood component is measured by causing a redox reaction between the blood component and the oxidoreductase in the presence of the mediator and detecting a redox current generated by the redox reaction by the working electrode and the counter electrode. In this sensor, the reagent portion further includes a hemolyzing agent (e.g., sodium cholate) for hemolyzing an erythrocyte, and when detecting the redox current, the erythrocyte is hemolyzed with the hemolyzing agent so as to cause hemoglobin released to an outside of the erythrocyte to react with the mediator and a current generated by this reaction also is detected to correct an effect of a hematocrit.
    • 提供了可以容易地校正血细胞比容的影响的用于血液成分分析的传感器。 传感器包括分析部分,其包括工作电极,对电极和试剂部分。 试剂部分包括与血液成分和介体反应的氧化还原酶,并且通过在介体存在下引起血液成分和氧化还原酶之间的氧化还原反应来测定血液成分,并检测由氧化还原反应产生的氧化还原电流 通过工作电极和对电极。 在该传感器中,试剂部还含有用于溶血红细胞的溶血剂(例如胆酸钠),当检测到氧化还原电流时,红细胞用溶血剂溶血,使血红蛋白释放到红细胞外 与介体反应,并且检测由该反应产生的电流以校正血细胞比容的影响。