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Ac4ManNAz

Ac4ManNAz,N-azidoacetylatedmannosamine-tetraacylated (Ac4ManAz),N-叠氮乙酰化甘露糖胺-四酰化(Ac4ManAz)。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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Ac4ManNAz


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CLK1084

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  • For general laboratory use.

    Please centrifuge briefly before opening (volume ≤2 ml).

    Shipping: shipped at ambient temperature

    Storage Conditions: store at -20 °C

    Shelf Life: 12 months after date of delivery

    Molecular Formula: C16H22N4O10

    Molecular Weight: 430.37 g/mol

    Exact Mass: 430.13 g/mol

    CAS#: 361154-30-5

    Purity: mass identification (ESI-MS)

    Form: oil

    Color: off-white to grey

    Solubility: DMSO, DMF, MeOH

    Applications:
    Glycoconjugate synthesis monitoring by metabolic labeling

    Description:
    The tetraacetylated N-Azidoacetyl-mannosamine (Ac4ManNAz) provides a non-radioactive alternative for glycoconjugate visualization. It is cell-permeable, intracellularly processed and incorporated instead of its natural monosaccharide counterpart N-Acetylmannosamine(ManNAc).

    The resulting Azide-functionalized glycoconjugates can subsequently be detected via Cu(I)-catalyzed or Cu(I)-free Click Chemistry that offers the choice to introduce a Biotin group (via Azides of Biotin or DBCO-containing Biotin, respectively) for subsequent purification tasks or to introduce fluorescent group (via Azides of fluorescent dyes or DBCO-containing fluorescent dyes, respectively) for subsequent microscopic imaging.

    Recommended concentration for metabolic labeling: 25-75 μM. This concentration range may serve as a starting point for an individual assay set-up.

  • 产品组分

    内容

    型号

    规格

    储存温度

    Ac4ManNAz

    CLK1084-01

    5mg

    -20 °C

    Ac4ManNAz

    CLK1084-02

    25mg

    -20 °C

    Ac4ManNAz

    CLK1084-03

    100mg

    -20 °C

    操作手册

    1 1

    常温

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    CLK1084-Ac4ManNAz

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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:
    Spiciarich et al. (2017) Bioorthogonal Labeling of Human Prostate Cancer Tissue Slice Cultures for Glycoproteomis. Angew. Chem. Int. Ed.129:1.

    Heat up, silence on: IDO1 gene silencing in THP-1-derived dendritic cells triggered by magnetic hyperthermia.

    Daniela Ferreira, Laura Asín, ..., Alexandra R Fernandes

    Cancer immunology, immunotherapy : CII  |  2025 Aug 23  |  40848064

    Proteins are a source of glycans found in preparations of glycoRNA

    Kegel Nathanael B., Demirel Nurseda Yilmaz, ..., Bauer Stefan

    bioRxiv  |  2025 Mar 17

    A Bioorthogonal Precision Tool for Human N -Acetylglucosaminyltransferase V.

    Yu Liu, Ganka Bineva-Todd, ..., Benjamin Schumann

    Journal of the American Chemical Society  |  2024 Sep 17  |  39287665

      Supplementary   Expanding the repertoire of GalNAc analogues for cell-specific bioorthogonal tagging of glycoproteins

    Abdul Zafar, Sandhya Sridhar, ..., Benjamin Schumann

    RSC Chemical Biology  |  2024 Aug 22  |  39238612

    Cell surface RNA expression modulates alveolar epithelial function

    Abledu Jubilant Kwame, Herbst Christopher J., ..., Kuebler Wolfgang M.

    bioRxiv  |  2024 May 21

    Programmed immobilization of living cells using independent click pairs.

    Chengyuan Zhu, Hiroyasu Takemoto, ..., Fumiyoshi Yamashita

    Biochemical and biophysical research commu…  |  2024 Feb 16  |  38277727

    Golgi satellites are essential for polysialylation of NCAM and expression of LTP at distal synapses.

    Maria Andres-Alonso, Maximilian Borgmeyer, ..., Michael R Kreutz

    Cell reports  |  2023 Jul 31  |  37355986 

    Module-assembly of injectable cellular DNA hydrogel via clickable cells and DNA scaffolds

    Hyangsu Nam, Hyunsu Jeon, ..., Jong Bum Lee

    Chemical Engineering Journal  |  2023 Jan 01

    From Bench to Cell: A Roadmap for Assessing the Bioorthogonal “Click” Reactivity of Magnetic Nanoparticles for Cell Surface Engineering

    Javier Idiago-López, Eduardo Moreno-Antolín, ..., Raluca M. Fratila

    Bioconjugate chemistry  |  2022 Jul 20  |  35857350

    Antibody Recognition of Cancer Cells via Glycan Surface Engineering

    Mathieu Szponarski, Karl Gademann

    ChemBioChem  |  2022 Jun 20  |  35638149

    Metabolic Glycoengineering in hMSC-TERT as a Model for Skeletal Precursors by Using Modified Azide/Alkyne Monosaccharides

    Stephan Altmann, Jürgen Mut, ..., Grzegorz Wegrzyn

    International Journal of Molecular Science…  |  2021 Mar 10  |  33802220

    Click Chemistry-mediated Biotinylation Reveals a Function for the Protease BACE1 in Modulating the Neuronal Surface Glycoproteome

    Julia Herber, Jasenka Njavro, ..., Stefan F. Lichtenthaler

    Molecular & Cellular Proteomics  |  2018 Aug 01  

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