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    • 1. 发明申请
    • BIOSENSOR DEVICE
    • 生物传感器设备
    • WO2007125479A2
    • 2007-11-08
    • PCT/IB2007/051510
    • 2007-04-24
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.FURUKAWA, YukikoORSEL, Joukje, G.STAPERT, Hendrik, R.
    • FURUKAWA, YukikoORSEL, Joukje, G.STAPERT, Hendrik, R.
    • G01N33/50
    • G01N33/5438G01N27/3275Y10T29/49002
    • A biosensor device (10) for detecting of molecules of an analyte in a sample (23) comprising: an identification element (18) comprising at least one self assembling monolayer (26) having a first surface, a transducer element (20) comprising a metal electrode (34) for receiving an electric signal from the reaction of the molecules in the sample with the at least one self assembling monolayer (26), and at least one electronic element (14, 16) for receiving the electric signal from the transducer element (20), for processing, and/or storing the electric signal. The at least one self-assembling monolayer (26) comprises at least one carboxylic acid-group for coupling the at least one self-assembling monolayer (26) to the surface (32) of the metal electrode (34).
    • 一种用于检测样品(23)中分析物的分子的生物传感器装置(10),包括:识别元件(18),包括至少一个具有第一表面的自组装单层(26),换能器元件(20) 金属电极(34),用于从样品中的分子与至少一个自组装单层(26)的反应接收电信号;以及至少一个电子元件(14,16),用于从换能器接收电信号 元件(20),用于处理和/或存储电信号。 所述至少一个自组装单层(26)包含至少一个用于将所述至少一个自组装单层(26)耦合到所述金属电极(34)的表面(32)的羧酸基团。
    • 3. 发明申请
    • NANOPARTICLES FOR DETECTING ANALYTES
    • 用于检测分析物的纳米颗粒
    • WO2005024425A1
    • 2005-03-17
    • PCT/IB2004/051698
    • 2004-09-07
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.STAPERT, Hendrik, R.HIKMET, Rifat, A., M.ORSEL, Joukje, G.
    • STAPERT, Hendrik, R.HIKMET, Rifat, A., M.ORSEL, Joukje, G.
    • G01N33/543
    • B82Y5/00B82Y10/00G01N33/54326
    • The invention relates to a device for detecting an analyte comprising a group that can form a covalent bond with the analyte and a detectable moiety, characterized in that the device is a nanoparticle and the detectable moiety is magneto-active, electro-active, or optically active, and to a method for detecting an analyte using a nanoparticle comprising a magneto-active, electro-active or optically active group and a group that can form a covalent bond with the analyte, comprising the steps: a) protecting groups that can form a covalent bond with the nanoparticle, if present on the capture probe; b) bonding the analyte to the optionally protected capture probe to obtain an analyte-capture probe complex of which the analyte contains at least one group that can form a covalent bond with the nanoparticle; c) bringing into contact the analyte-capture probe complex and the nanoparticle to form a covalent bond with each other; d) detecting the analyte which is covalently bonded to the nanoparticle by an amperometric, impedimetric, magnetic, or optical method.
    • 本发明涉及一种用于检测分析物的装置,包括可以与分析物和可检测部分形成共价键的基团,其特征在于该装置是纳米颗粒,可检测部分是磁性的,电活性的或光学的 以及使用包含磁性,电活性或光学活性基团的纳米颗粒和可与分析物形成共价键的基团检测分析物的方法,包括以下步骤:a)保护可形成的基团 与纳米颗粒共价键,如果存在于捕获探针上; b)将分析物结合到任选保护的捕获探针,以获得分析物捕获探针复合物,其中分析物含有至少一个可与纳米颗粒形成共价键的基团; c)使分析物捕获探针复合物和纳米颗粒接触以形成彼此的共价键; d)通过电流,阻抗,磁性或光学方法检测与纳米颗粒共价结合的分析物。