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BTTAA

BTTAA,2-(4-((bis((1-(tert-butyl)-1H-1,2,3-triazol-4-yl)methyl)amino)methyl)-1H-1,2,3-triazol-1-yl)acetic acid,2-(4-((双((1-(叔丁基)-1H-1,2,3-三唑-4-基)甲基)氨基)甲基)-1H-1,2,3-三唑-1-基)乙酸。更多视频请关注视频号【艾维缔】。哔哩哔哩【IVDSHOW】。抖音【军哥聊表观】。


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BTTAA


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目录号

CLK067

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  • For general laboratory use.

    Shipping: shipped at ambient temperature

    Storage Conditions: store at -20 °C
    Short term exposure (up to 1 week cumulative) to ambient temperature possible.

    Shelf Life: 12 months after date of delivery

    Molecular Formula: C19H30N10O2

    Molecular Weight: 430.51 g/mol

    Exact Mass: 430.26 g/mol

    Purity: ≥ 95 % (HPLC)

    Form: solid

    Color: white to off-white

    Solubility: water, DMSO, DMF, MeOH

    Description:
    BTTAA is a water-soluble, very effective ligand for Cu(I)-catalyzed Alkyne-Azide click chemistry reactions (CuAAC). It serves a dual purpose: 1) Accelaration of the CuAAC reaction by maintaining the Cu(I) oxidation state of copper sources and 2) Protection of biomolecules from oxidative damage during the labeling reaction[1,2].

    BTTAA is a superior alternative to water-insoluble TBTA.

    A stock solution can be prepared in ddH2O and subsequently be stored at -20°C. Avoid freeze-thaw cycles.

    Presolski et al.[3] and Hong et al.[4] provide a general protocol for CuAAC reactions that may be used as a starting point for the set up and optimization of individual assays.

  • 产品组分

    内容

    型号

    规格

    储存温度

    BTTAA

    CLK067-01

    25mg

    -20 °C

    BTTAA

    CLK067-02

    100mg

    -20 °C

    BTTAA

    CLK06703

    200mg

    -20 °C

    操作手册

    1 1

    常温

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    CLK067-BTTAA

    中文手册

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  • 注意事项

    保存建议 厂家推荐蓝冰运输。当您收到产品后,按照说明书建议保存于-20°C。

     

  • FAQ

  • Selected References:
    [1] Besanceney-Webler et al. (2011) Increasing the Efficiacy of Bioorthogonal Click Reactions for Bioconjugation: A Comparative Study Angew. Chem. Int. Ed. 50:8051.
    [2] Uttamapinant et al. (2012) Fast, Cell-Compatible Click Chemistry with Copper-Chelating Azides for Biomolecular Labeling. Angew. Chem. Int. Ed. 51:5852.
    [3] Presolski et al. (2011) Copper-Catalyzed Azide-Alkyne Click Chemistry for Bioconjugation. Current Protocols in Chemical Biology 3:153.
    [4] Hong et al. (2011) Analysis and Optimization of Copper-Catalyzed Azide-Alkyne Cycloaddition for Bioconjugation. Angew. Chem. Int. Ed. 48:9879.

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