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    • 3. 发明授权
    • Sandwich assay for immunosuppressant drugs
    • 免疫抑制药物的三明治测定
    • US08586322B2
    • 2013-11-19
    • US13413925
    • 2012-03-07
    • Tie Quan Wei
    • Tie Quan Wei
    • G01N33/53G01N33/553
    • G01N33/9493G01N2333/36
    • Methods are disclosed for determining an immunosuppressant drug in a sample suspected of containing an immunosuppressant drug. The method includes providing in combination in a medium the sample, a first monoclonal antibody for the immunosuppressant drug, and a second monoclonal antibody for the immunosuppressant drug. The second monoclonal antibody binds to a portion of the immunosuppressant drug other than the portion to which the first monoclonal antibody binds to the immunosuppressant drug. The medium is incubated under conditions for binding of the first monoclonal antibody and the second monoclonal antibody to the immunosuppressant drug. The medium is examined for the presence of an immunocomplex comprising the immunosuppressant drug, the first monoclonal antibody and the second monoclonal antibody. The presence and/or amount of the immunocomplex indicates the presence and/or amount of the immunosuppressant drug in the sample.
    • 公开了用于确定怀疑含有免疫抑制剂药物的样品中的免疫抑制剂药物的方法。 该方法包括在培养基中组合提供样品,用于免疫抑制剂药物的第一单克隆抗体和用于免疫抑制剂药物的第二单克隆抗体。 第二单克隆抗体结合一部分免疫抑制剂药物,而不是第一单克隆抗体与免疫抑制剂药物结合的部分。 将培养基在第一单克隆抗体和第二单克隆抗体与免疫抑制剂药物结合的条件下孵育。 检查介质是否存在包含免疫抑制剂药物,第一单克隆抗体和第二单克隆抗体的免疫复合物。 免疫复合物的存在和/或量表示样品中免疫抑制剂药物的存在和/或量。
    • 5. 发明授权
    • Protein, a gene encoding therefor and a method of using the same
    • 蛋白质,其编码基因及其使用方法
    • US07989610B2
    • 2011-08-02
    • US12942978
    • 2010-11-09
    • Yoshimitsu Takakura
    • Yoshimitsu Takakura
    • C07H21/04
    • A01N63/04C07K14/375C12N15/8282G01N2333/36
    • An object of the present invention is to search and identify novel antifungal proteins capable of inhibiting the growth of plant pathogenic microorganisms including Magnaporthe grisea and Rhizoctonia solani causing two major rice diseases at relatively low concentrations, and further to clone a gene for said protein. The present invention provides an antifungal protein which can be obtained from fraction(s) precipitated by ammonium sulfate precipitation using an aqueous extract from Pleurotus cornucopiae, wherein said protein has an antifungal activity against at least rice blast, and exhibits existence of a component having a molecular weight of about 15 kDa as determined by SDS-PAGE method; a gene encoding said protein and uses thereof.
    • 本发明的目的是搜索并鉴定能够抑制植物病原微生物生长的新型抗真菌蛋白质,包括稻瘟病菌和丝核丝杆菌,其以相对低的浓度引起两种主要的水稻病害,并进一步克隆所述蛋白质的基因。 本发明提供了一种抗真菌蛋白质,其可以从使用来自白头翁聚合物的水提取物沉淀的级分获得,其中所述蛋白质具有至少抗稻瘟病的抗真菌活性,并且表现出存在具有 通过SDS-PAGE法测定分子量约15kDa; 编码所述蛋白质的基因及其用途。
    • 10. 发明授权
    • Comparative phenotype analysis
    • 比较表型分析
    • US06727076B2
    • 2004-04-27
    • US10226436
    • 2002-08-23
    • Barry Bochner
    • Barry Bochner
    • C12Q104
    • C12Q1/04C12Q2304/20C12Q2304/22C12Q2304/24G01N2035/00148G01N2333/36Y10S435/81Y10S435/822Y10S435/911Y10S435/975
    • The present invention relates to growing and testing microorganisms in a multitest format which utilizes a gel forming matrix for the rapid screening of clinical and environmental cultures. The present invention is suited for the characterization of commonly encountered microorganisms (e.g., E. coli, S. aureus, etc.), as well as commercially and industrially important organisms from various and diverse environments (e.g., the present invention is particularly suited for the growth and characterization of the actinomycetes and fungi). The present invention is also particularly suited for comparative analysis of phenotypic differences between cell types, including strains of microorganisms that have been designated as the same genus and species, as well as other cell types (e.g., mammalian, insect, and plant cells).
    • 本发明涉及利用凝胶形成基质以快速筛选临床和环境培养物来培养和测试多种格式的微生物。 本发明适用于常见的微生物(例如,大肠杆菌,金黄色葡萄球菌等)的表征,以及来自各种和各种环境的商业和工业上重要的生物体(例如,本发明特别适用于 放线菌和真菌的生长和表征)。 本发明还特别适用于细胞类型之间的表型差异的比较分析,包括已被指定为相同属和物种的微生物以及其它细胞类型(例如哺乳动物,昆虫和植物细胞)的菌株。