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    • 5. 发明申请
    • SINGLE-MOLECULE-FORMAT REAL-TIME BIOLUMINESCENCE IMAGING PROBE
    • 单分子格式实时生物显微成像探针
    • US20090176239A1
    • 2009-07-09
    • US12343830
    • 2008-12-24
    • Sung-Bae KIMHiroaki TAOMoritoshi SATO
    • Sung-Bae KIMHiroaki TAOMoritoshi SATO
    • C12Q1/68C12N9/96C12N15/11C12N15/00C12N5/06C12Q1/66
    • C12N15/62C07K14/4728C07K14/721C12N9/0069C12N9/1205
    • The present invention provides an “in vivo and in vitro real-time bioluminescence imaging means,” which can transmit a detection signal promptly in response to an external signal, while taking advantage of a single-molecule-format luminescent probe as a bioluminescent means.The present invention is characterized by using, as a single-molecule-format luminescent probe utilizing the increase and decrease of a second messenger level as an index, a fusion protein including a single-chain protein containing a second messenger recognition protein and optionally a peptide which is capable of binding with the protein, and linked respectively to the N-terminus and the C-terminus thereto, an N-terminal fragment (N-LE) and a C-terminal fragment (C-LE) generated by dissecting a luminescent enzyme (LE). A single-molecule-format luminescent probe could be provided, which makes it possible to observe light emission (extinction) in vivo as well as in vitro, as a result of a conformational change of the second messenger recognition protein induced by the binding (unbinding) with a second messenger, and the subsequent association or dissociation between the N-LE and the C-LE flanked at both termini of the recognition protein.
    • 本发明提供了一种“体内和体外实时生物发光成像装置”,其可以利用单分子格式的发光探针作为生物发光装置,利用外部信号迅速地发送检测信号。 本发明的特征在于,使用以第二信使水平的增加和减少为指标的单分子格式的发光探针,包含含有第二信使识别蛋白和任选的肽的单链蛋白的融合蛋白 其能够与蛋白质结合并分别连接到其N末端和C末端,通过解析发光的N末端片段(N-LE)和C-末端片段(C-LE) 酶(LE)。 可以提供单分子格式的发光探针,这使得可以在体内和体外观察光发射(消光),作为由结合诱导的第二信使识别蛋白(解键合)的构象变化的结果 )和第二信使的N-LE和C-LE之间的后续关联或解离,两侧位于识别蛋白的两个末端。
    • 7. 发明申请
    • Inductively-coupled plasma torch
    • 感应耦合等离子体焰炬
    • US20060024199A1
    • 2006-02-02
    • US11184671
    • 2005-07-19
    • Hiroaki TaoTetsuya NakazatoKenichi Sakata
    • Hiroaki TaoTetsuya NakazatoKenichi Sakata
    • G01N27/00
    • H01J49/105G01N30/7206H05H1/30H05H1/42
    • To provide an inductively-coupled plasma torch capable of realizing a GC analysis or the like and a solution analysis by the same torch without removing a capillary tube, etc. The injector tube of the inductively-coupled plasma torch includes an outer injector tube 11 for introducing an atomized solution sample or the like into the inductively-coupled plasma, and an inner injector tube 12 for introducing gaseous molecules into the inductively-coupled plasma, housed in the outer injector tube as integrated and coaxially with it. The inner injector tube is able to convey make-up gas, and has a capillary tube 4 for conveying gaseous molecules and carrier gas together. For sample introduction in analyzing a gaseous sample, the inner injector tube 12 is used, and for sample introduction in analyzing an aerosol sample, the outer injector tube 11 is used.
    • 提供能够实现GC分析等的电感耦合等离子体焰炬和通过相同的手电筒进行溶液分析而不去除毛细管等。电感耦合等离子体焰炬的喷射管包括外部喷射管11,其用于 将雾化溶液样品等引入电感耦合等离子体,以及内部注射管12,用于将气态分子引入感应耦合等离子体中,该等离子体被容纳在与其一体并与其同轴的外部注射管中。 内部注射管能够输送补充气体,并且具有用于将气态分子和载气一起输送的毛细管4。 对于分析气体样品的样品介绍,使用内部注射管12,并且为了在分析气溶胶样品时进行样品引入,使用外部注射管11。