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    • 8. 发明申请
    • ANALYTICAL DEVICE AND ANALYTICAL METHOD
    • 分析装置和分析方法
    • US20130273530A1
    • 2013-10-17
    • US13996389
    • 2011-12-22
    • Katsunori HoriiShintarou KatouJou AkitomiIwao Waga
    • Katsunori HoriiShintarou KatouJou AkitomiIwao Waga
    • C12Q1/68
    • C12Q1/68C12N15/111C12N2310/16C12N2320/10C12Q1/6834G01N33/54306C12Q2525/205C12Q2563/131
    • The present invention provides a technique capable of simply analyzing a target to be analyzed. An analytical device of the present invention includes a basal plate; a nucleic acid element; and a detection section of detecting a signal. The nucleic acid element and the detection section are arranged on the basal plate. The nucleic acid element includes a first nucleic acid molecule and a second nucleic acid molecule. The first nucleic acid molecule is a nucleic acid molecule capable of binding to a target. The second nucleic acid molecule is a nucleic acid molecule capable of binding to streptavidin. When the target does not bind to the first nucleic acid molecule, a binding capacity of the second nucleic acid molecule to the streptavidin is inactivated. When the target binds to the first nucleic acid molecule, a binding capacity of the second nucleic acid molecule to the streptavidin is activated. The detection section detects binding between the second nucleic acid molecule and the streptavidin. The target is bound to the first nucleic acid molecule, so that the streptavidin is bound to the second nucleic acid molecule. Thus, the target can be analyzed through detecting the binding between the second nucleic acid molecule and the streptavidin using the detection device.
    • 本发明提供能够简单地分析要分析的靶的技术。 本发明的分析装置包括基板; 核酸元件; 以及检测信号的检测部。 核酸元件和检测部设置在基板上。 核酸元件包括第一核酸分子和第二核酸分子。 第一核酸分子是能够结合靶的核酸分子。 第二核酸分子是能够结合链霉亲和素的核酸分子。 当靶不与第一核酸分子结合时,第二核酸分子与链霉抗生物素蛋白的结合能力失活。 当靶标与第一核酸分子结合时,第二核酸分子与链亲和素的结合能力被激活。 检测部分检测第二核酸分子和链霉抗生物素蛋白之间的结合。 靶标与第一核酸分子结合,使得链亲和素与第二核酸分子结合。 因此,可以使用检测装置通过检测第二核酸分子和链霉亲和素之间的结合来分析靶。
    • 9. 发明申请
    • DEVICE AND METHOD FOR ANALYZING STREPTAVIDIN
    • 用于分析STREPTAVIDIN的装置和方法
    • US20150086980A1
    • 2015-03-26
    • US14387431
    • 2013-03-21
    • Katsunori HoriiNaoto KanekoJou AkitomiShintaro KatoIwao Waga
    • Katsunori HoriiNaoto KanekoJou AkitomiShintaro KatoIwao Waga
    • G01N33/543G01N33/58G01N33/68C12N15/113C12N15/115
    • G01N33/54306C12N9/0065C12N15/113C12N15/115C12Y111/01007G01N33/542G01N33/58G01N33/68G01N2333/36
    • The present invention provides a novel sensor for detecting streptavidin (SA). The nucleic acid sensor for analyzing SA of the present invention includes the following nucleic acid element that includes a catalyst nucleic acid molecule (D) that exerts a catalytic function and a binding nucleic acid molecule (A) that binds to SA. The nucleic acid element is a double-stranded nucleic acid element including a first strand and a second strand. The first strand (ss1) includes the binding nucleic acid molecule (A), a loop-forming sequence (L1), and the catalyst nucleic acid molecule (D) linked in this order. The second strand (ss2) includes a stem-forming sequence (SA), a loop-forming sequence (L2), and a stem-forming sequence (SD) linked in this order. In this nucleic acid element, in the absence of SA, the catalytic function of the catalyst nucleic acid molecule (D) is inhibited by stem formation in each of the stem-forming sequences (SA) and (SD), and in the presence of SA, the stem formation is released by a binding of the binding nucleic acid molecule (A) with the SA, and the catalytic function of the catalyst nucleic acid molecule (D) is exerted.
    • 本发明提供了用于检测链霉亲和素(SA)的新型传感器。 用于分析本发明的SA的核酸传感器包括以下核酸元件,其包含发挥催化功能的催化剂核酸分子(D)和与SA结合的结合核酸分子(A)。 核酸元件是包含第一链和第二链的双链核酸元件。 第一链(ss1)包括依次连接的结合核酸分子(A),环形成序列(L1)和催化剂核酸分子(D)。 第二链(ss2)包括以此顺序连接的茎形成序列(SA),环形成序列(L2)和茎形成序列(SD)。 在该核酸元件中,在不存在SA的情况下,催化剂核酸分子(D)的催化功能受到每个茎形成序列(SA)和(SD)中的茎形成的抑制,并且在 SA,通过结合核酸分子(A)与SA的结合释放茎的形成,并且发挥催化剂核酸分子(D)的催化功能。