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    • 1. 发明申请
    • Method and biosensor for analysis
    • 方法和生物传感器进行分析
    • US20070254382A1
    • 2007-11-01
    • US11785238
    • 2007-04-16
    • Inger VikholmJanusz Sadowski
    • Inger VikholmJanusz Sadowski
    • G01N33/536
    • G01N33/54393G01N33/54373Y10S435/808Y10S435/962Y10S436/805Y10S436/806Y10S436/81
    • In a method for analysis biomolecules (3) attached to a solid surface of a substrate (1) are used for detecting the presence of analytes (4) in a sample by binding of the analytes to the biomolecules. The biomolecules (3) are attached directly to the surface of the substrate together with biomolecule-repellent molecules (5), which cover the surface between the biomolecules (3) to prevent nonspecific binding of analytes (4) and other biomolecules. The invention relates also to a biosensor where biomolecules (3) are attached directly to the substrate (1) together with biomolecule-repellent molecules (5), which cover the surface between the biomolecules (3) to prevent non-specific binding of analytes (4) and other biomolecules. The biomolecules (5) can be self-assembled hydrophilic polymers. One example of using the invention is immunological analysis using surface plasmon resonance (SPR).
    • 在分析方法中,连接到基质(1)的固体表面的生物分子(3)用于通过将分析物与生物分子结合来检测样品中分析物(4)的存在。 生物分子(3)与生物分子驱避分子(5)直接连接到基底表面,分子(5)覆盖生物分子(3)之间的表面,以防止分析物(4)与其他生物分子的非特异性结合。 本发明还涉及一种生物传感器,其中生物分子(3)与生物分子排斥分子(5)一起直接连接到基底(1),其覆盖生物分子(3)之间的表面,以防止分析物的非特异性结合( 4)和其他生物分子。 生物分子(5)可以是自组装的亲水性聚合物。 使用本发明的一个实例是使用表面等离子体共振(SPR)的免疫学分析。
    • 2. 发明申请
    • Method and Device for Carrying Out Surface Plasmon Resonance Measurement
    • 执行表面等离子体共振测量的方法和装置
    • US20080024783A1
    • 2008-01-31
    • US10579774
    • 2003-11-19
    • Janusz Sadowski
    • Janusz Sadowski
    • G01N21/55G02B5/08
    • G01N21/553
    • A method and a device for carrying out surface plasmon resonance measurement. A beam of electromagnetic radiation is produced by a source of electromagnetic radiation. The beam of electromagnetic radiation is directed through a prism onto a material layer in an angle of incidence, which material layer covers a planar surface of the prism. A resonance phenomenon is caused. A beam of reflected electromagnetic radiation is produced and directed by the surface to a detector for detecting the level of intensity of the beam of reflected electromagnetic radiation. The change of intensity of the beam of reflected electromagnetic radiation, caused by the surface resonance phenomenon, is measured. The beam of reflected electromagnetic radiation is reflected with a mirror to the detector.
    • 用于进行表面等离子共振测量的方法和装置。 一束电磁辐射是由电磁辐射源产生的。 电磁辐射束以入射角通过棱镜穿过材料层,该材料层覆盖棱镜的平面。 引起共振现象。 反射的电磁辐射束由表面产生并引导到检测器,用于检测反射电磁辐射束的强度水平。 测量由表面共振现象引起的反射电磁辐射束的强度变化。 反射的电磁辐射束被镜子反射到检测器。
    • 5. 发明授权
    • Method and device for carrying out surface plasmon resonance measurement
    • 用于进行表面等离子体共振测量的方法和装置
    • US07701582B2
    • 2010-04-20
    • US10579774
    • 2003-11-19
    • Janusz Sadowski
    • Janusz Sadowski
    • G01N21/55
    • G01N21/553
    • A method and a device for carrying out surface plasmon resonance measurement. A beam of electromagnetic radiation is produced by a source of electromagnetic radiation. The beam of electromagnetic radiation is directed through a prism onto a material layer in an angle of incidence, which material layer covers a planar surface of the prism. A resonance phenomenon is caused. A beam of reflected electromagnetic radiation is produced and directed by the surface to a detector for detecting the level of intensity of the beam of reflected electromagnetic radiation. The change of intensity of the beam of reflected electromagnetic radiation, caused by the surface resonance phenomenon, is measured. The beam of reflected electromagnetic radiation is reflected with a mirror to the detector.
    • 用于进行表面等离子共振测量的方法和装置。 一束电磁辐射是由电磁辐射源产生的。 电磁辐射束以入射角通过棱镜穿过材料层,该材料层覆盖棱镜的平面。 引起共振现象。 反射的电磁辐射束由表面产生并引导到检测器,用于检测反射电磁辐射束的强度水平。 测量由表面共振现象引起的反射电磁辐射束的强度变化。 反射的电磁辐射束被镜子反射到检测器。
    • 6. 发明授权
    • Method and biosensor for analysis
    • 方法和生物传感器进行分析
    • US07510882B2
    • 2009-03-31
    • US11785238
    • 2007-04-16
    • Inger VikholmJanusz Sadowski
    • Inger VikholmJanusz Sadowski
    • G01N33/543G01N33/551G01N33/552G01N33/553
    • G01N33/54393G01N33/54373Y10S435/808Y10S435/962Y10S436/805Y10S436/806Y10S436/81
    • In a method for analysis biomolecules (3) attached to a solid surface of a substrate (1) are used for detecting the presence of analytes (4) in a sample by binding of the analytes to the biomolecules. The biomolecules (3) are attached directly to the surface of the substrate together with biomolecule-repellent molecules (5), which cover the surface between the biomolecules (3) to prevent nonspecific binding of analytes (4) and other biomolecules. The invention relates also to a biosensor where biomolecules (3) are attached directly to the substrate (1) together with biomolecule-repellent molecules (5), which cover the surface between the biomolecules (3) to prevent non-specific binding of analytes (4) and other biomolecules. The biomolecules (5) can be self-assembled hydrophilic polymers. One example of using the invention is immunological analysis using surface plasmon resonance (SPR).
    • 在分析方法中,连接到基质(1)的固体表面的生物分子(3)用于通过将分析物与生物分子结合来检测样品中分析物(4)的存在。 生物分子(3)与生物分子驱避分子(5)直接连接到基底表面,分子(5)覆盖生物分子(3)之间的表面,以防止分析物(4)与其他生物分子的非特异性结合。 本发明还涉及一种生物传感器,其中生物分子(3)与生物分子排斥分子(5)一起直接连接到基底(1),其覆盖生物分子(3)之间的表面,以防止分析物的非特异性结合( 4)和其他生物分子。 生物分子(5)可以是自组装的亲水性聚合物。 使用本发明的一个实例是使用表面等离子体共振(SPR)的免疫学分析。
    • 7. 发明授权
    • Method and biosensor for analysis
    • 方法和生物传感器进行分析
    • US07332327B2
    • 2008-02-19
    • US10164652
    • 2002-06-10
    • Inger VikholmJanusz Sadowski
    • Inger VikholmJanusz Sadowski
    • C12M1/34
    • G01N33/54393G01N33/54373Y10S435/808Y10S435/962Y10S436/805Y10S436/806Y10S436/81
    • In a method for analysis biomolecules (3) attached to a solid surface of a substrate (1) are used for detecting the presence of analytes (4) in a sample by binding of the analytes to the biomolecules. The biomolecules (3) are attached directly to the surface of the substrate together with biomolecule-repellent molecules (5), which cover the surface between the biomolecules (3) to prevent nonspecific binding of analytes (4) and other biomolecules. The invention relates also to a biosensor where biomolecules (3) are attached directly to the substrate (1) together with biomolecule-repellent molecules (5), which cover the surface between the biomolecules (3) to prevent non-specific binding of analytes (4) and other biomolecules. The biomolecules (5) can be self-assembled hydrophilic polymers. One example of using the invention is immunological analysis using surface plasmon resonance (SPR).
    • 在分析方法中,连接到基质(1)的固体表面的生物分子(3)用于通过将分析物与生物分子结合来检测样品中分析物(4)的存在。 生物分子(3)与生物分子驱避分子(5)直接连接到基底表面,分子(5)覆盖生物分子(3)之间的表面,以防止分析物(4)与其他生物分子的非特异性结合。 本发明还涉及一种生物传感器,其中生物分子(3)与生物分子排斥分子(5)一起直接连接到基底(1),其覆盖生物分子(3)之间的表面,以防止分析物的非特异性结合( 4)和其他生物分子。 生物分子(5)可以是自组装的亲水性聚合物。 使用本发明的一个实例是使用表面等离子体共振(SPR)的免疫学分析。