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    • 2. 发明授权
    • Kit for immobilizing organic substance, organic substance-immobilized structure, and manufacturing methods therefor
    • 固定有机物,有机物固定结构的试剂盒及其制造方法
    • US07622263B2
    • 2009-11-24
    • US10555383
    • 2005-01-25
    • Kazuhiro BanHidenori ShiotsukaTakeshi Imamura
    • Kazuhiro BanHidenori ShiotsukaTakeshi Imamura
    • G01N33/53G01N33/00C07K5/00
    • G01N33/54353G01N33/551
    • To provide an organic substance-immobilized structure employing a novel immobilizing technique and a manufacturing method thereof using the novel immobilizing technique, where, when an organic substance, particularly a biological substance is immobilized on the surface of a substrate, the organic substance, particularly the biological substance can be stably immobilized on the surface of the substrate through orientation of the organic substance, particularly the biological substance suitable for exerting physiological functions thereof. At least part of the substrate's surface is constructed of one or more substrates containing aluminum oxide. The immobilization of the organic substance to the surface of the substrate is carried out by binding at least part of the binding domain to the surface of the substrate through a binding domain containing a peptide having an affinity to aluminum oxide and composed of at least one or more amino acids, which is coupled with the organic substance.
    • 为了提供采用新型固定化技术的有机物质固定化结构及其制造方法,其中,当将有机物质,特别是生物物质固定在基材表面上时,有机物质,特别是 生物物质可以通过有机物质,特别是适于发挥其生理功能的生物物质的取向,稳定地固定在基材的表面上。 衬底表面的至少一部分由含有氧化铝的一个或多个衬底构成。 有机物质固定到底物的表面是通过结合结构域与底物的表面结合而进行的,所述结合结构域含有与氧化铝具有亲和性的肽,并且由至少一个或多个 更多的氨基酸,其与有机物质偶联。
    • 3. 发明申请
    • Kit for Immobilizing Organic Substance, Organic Substance-Immobilized Structure, and Manufacturing Methods Therefor
    • 固定化有机物,有机物固定化结构用试剂盒及其制造方法
    • US20080108132A1
    • 2008-05-08
    • US10555383
    • 2005-01-25
    • Kazuhiro BanHidenori ShiotsukaTakeshi Imamura
    • Kazuhiro BanHidenori ShiotsukaTakeshi Imamura
    • C12N15/63C07K7/08C07K7/64C07H21/04
    • G01N33/54353G01N33/551
    • To provide an organic substance-immobilized structure employing a novel immobilizing technique and a manufacturing method thereof using the novel immobilizing technique, where, when an organic substance, particularly a biological substance is immobilized on the surface of a substrate, the organic substance, particularly the biological substance can be stably immobilized on the surface of the substrate through orientation of the organic substance, particularly the biological substance suitable for exerting physiological functions thereof. At least part of the substrate's surface is constructed of one or more substrates containing aluminum oxide. The immobilization of the organic substance to the surface of the substrate is carried out by binding at least part of the binding domain to the surface of the substrate through a binding domain containing a peptide having an affinity to aluminum oxide and composed of at least one or more amino acids, which is coupled with the organic substance.
    • 为了提供采用新型固定化技术的有机物质固定化结构及其制造方法,其中,当将有机物质,特别是生物物质固定在基材表面上时,有机物质,特别是 生物物质可以通过有机物质,特别是适于发挥其生理功能的生物物质的取向,稳定地固定在基材的表面上。 衬底表面的至少一部分由含有氧化铝的一个或多个衬底构成。 有机物质固定到底物的表面是通过结合结构域与底物的表面结合而进行的,所述结合结构域含有与氧化铝具有亲和性的肽,并且由至少一个或多个 更多的氨基酸,其与有机物质偶联。
    • 9. 发明申请
    • INFORMATION OBTAINING METHOD
    • 信息获取方法
    • US20080290268A1
    • 2008-11-27
    • US12120512
    • 2008-05-14
    • Manabu KomatsuHiroyuki HashimotoYohei MurayamaKazuhiro Ban
    • Manabu KomatsuHiroyuki HashimotoYohei MurayamaKazuhiro Ban
    • B01D59/44
    • H01J49/145
    • An information obtaining method for obtaining information about a mass of a component of an analyte using a time of flight mass spectrometer and obtaining information about a distribution state of the component based on the obtained information about the mass includes the step of: (1) adding a self-reactive substance to the analyte on a base to facilitate ionization of the component; (2) irradiating the analyte with a primary beam in the presence of the self-reactive substance, thereby ionizing the components and allowing resulting ions to fly; (3) obtaining information about mass of the flying ions using the time of flight mass spectrometer; and (4) obtaining information about the distribution state of the component on the base based on the information about the mass.
    • 使用飞行时间质谱仪获取关于分析物的成分的质量的信息的信息获取方法,基于获得的关于质量的信息获得关于部件的分布状态的信息,包括以下步骤:(1)添加 对基底上的分析物的自反应物质,以促进组分的离子化; (2)在存在自反应物质的情况下用主光束照射分析物,从而电离成分并允许所得离子飞行; (3)使用飞行时间质谱仪获取关于飞行离子质量的信息; 和(4)基于关于质量的信息获得关于组件在基础上的分布状态的信息。
    • 10. 发明申请
    • METHOD FOR TREATING LIVING SAMPLES AND ANALYZING THE SAME
    • 用于处理生活样品和分析样品的方法
    • US20080090267A1
    • 2008-04-17
    • US11867276
    • 2007-10-04
    • Manabu KomatsuHiroyuki HashimotoKazuhiro BanYohei Murayama
    • Manabu KomatsuHiroyuki HashimotoKazuhiro BanYohei Murayama
    • C12Q1/02
    • G01N33/5082G01N35/1002G01N2035/1041
    • A method is provided by which a reagent is provided to a living sample, including contacting a thin-film containing a porous body with a living sample containing cells or tissues, and discharging a solution containing at least one or more reagents to a non-contact side of the thin-film by ink-jet to provide the solution to the specific area of the living sample through pores on the thin-film, wherein the smaller diameter of the pores on the porous body relative to the diameter of cells in the living sample enables the reagent to be provided to each individual cell separately. According to this method, the reagent and the reaction product can be fixed while maintaining positioning information of the target substance in the living sample, as a pretreatment for analyzing with high positioning accuracy the target substance in each individual cell in the living sample.
    • 提供了一种将试剂提供给活体样品的方法,包括使含有多孔体的薄膜与含有细胞或组织的活体样品接触,并将含有至少一种或多种试剂的溶液排出至非接触 通过喷墨使薄膜的一侧通过薄膜上的孔提供到活体样品的特定区域的溶液,其中多孔体上的孔的直径相对于活体中细胞的直径较小 样品使得可以分别向每个单独的细胞提供试剂。 根据该方法,可以在维持活体样品中的目标物质的定位信息的同时固定试剂和反应产物,作为用于以高定位精度分析活体样品中各个细胞中的目标物质的预处理。