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        單細胞應力加載系統(tǒng),單個細胞機械力刺激培養(yǎng)系統(tǒng),單個細胞應力加載,單細胞應力刺激培養(yǎng)

        型號:cell confiner
        聯(lián)系人:李先生
        聯(lián)系電話:18618101725
        品牌:法國cell confinement

        單層細胞壓縮力刺激系統(tǒng)


        細胞被均勻地限制/壓縮在兩個亞微米分辨率的兩個平行表面之間。
        不同的限制高度(例如1um – 300um)
        允許長期細胞培養(yǎng)和細胞增殖,同時保持對封閉的完美控制
        與高分辨率光學顯微鏡系統(tǒng)兼容
        可以處理足夠多的細胞以進行完整的基因表達分析
        可與生物功能化的微結構化底物和/或不同的基質(幾何形狀控制)結合使用
        可以與凝膠結合(硬度控制)
        兼容任何細胞培養(yǎng)底物(培養(yǎng)皿至96孔板)


        產(chǎn)品:



        應用:

        Cell migration 2.5D, migration and interaction of non-adhesive cells, cell squeezing, imaging of flat cells (organelles aligned in 2D), super-resolution video-microscopy (organelles move less), contractility assay, etc
        Confinement illustration
        HeLa cells: not confined, 5 ?m, 3 ?m.
        Explore examples of applications

        > Cancer invasiveness assay: Quantification of migration behaviors and migration transitions
        > Cancer aggressiveness assay: Quantification of contractility of somatic or cancer cells
        > Endocytosis assay: Improved observation of events taking place at the membrane
        > Exocytosis assay: Improved observation of events taking place at the apical membrane
        > Frustrated phagocytosis: Characterization of the mechanism
        > Immune system in a well: 2D migration and interaction of non-adherent immune cells
        > Immune cells interaction: 2D interaction of non-adherent immune cells
        > Mitotic assembly assay: Quantification of mitotic spindle disorders
        > Quantitative cell migration assay: Fast and fine analysis of cell migration properties

        文獻:

        PUBLICATIONS

         

        • Confinement and Low Adhesion Induce Fast Amoeboid Migration of Slow Mesenchymal Cells
          Y.-J. Liu, M. Piel, Cell, et al., 2015 160(4), 659-672
        • Actin flows induce a universal coupling between cell speed and cell persistence
          P. Maiuri, R. Voituriez, et al., Cell, 2015 161(2), 374–386
        • Geometric friction directs cell migration
          M. Le Berre, M. Piel, et al., Physical Review Letter 2013 111, 198101
        • Mitotic rounding alters cell geometry to ensure efficient spindle assembly
          O. M. Lancaster, B. Baum, et al., Developmental Cell, 2013 25(3), 270-283
        • Fine Control of Nuclear Confinement Identifies a Threshold Deformation leading to Lamina Rupture and Induction of Specific Genes
          M. Le Berre, J. Aubertin, M. Piel, Integrative Biology, 2012 4 (11), 1406-1414
        • Exploring the Function of Cell Shape and Size during Mitosis
          C. Cadart, H. K. Matthews, et al., Developmental Cell, 2014 29(2), 159-169
        • Methods for Two-Dimensional Cell Confinement
          M. Le Berre, M. Piel, et al., 2014, Micropatterning in Cell Biology Part C, Methods in cell biology, 121, 213-29

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