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    • 5. 发明申请
    • PATTERNING AND CELLULAR CO-CULTURE
    • 文化与细胞文化
    • WO2012166794A1
    • 2012-12-06
    • PCT/US2012/039991
    • 2012-05-30
    • NANOINK, INC.COLLINS, John, M.NETTIKADAN, Saju, R.
    • COLLINS, John, M.NETTIKADAN, Saju, R.
    • C12N5/00G01N33/50
    • C12N5/0068C12N2502/00C12N2533/12C12N2533/52C12N2535/10G01N2500/10
    • Cell co-culturing methods and arrays providing versatility and high resolution. A method comprising: providing at least one substrate; providing at least one first tip with at least one first cell-adhesion material disposed thereon, and at least one second tip with at least one second cell-adhesion material disposed thereon, wherein the first cell-adhesion material is different from the second cell-adhesion material; depositing the first cell-adhesion material from the first tip to the substrate to form at least one first deposit, and depositing the second cell-adhesion material from the second tip to the substrate to form at least one second deposit; and wherein the first and second deposits are capable of providing selective binding to at least one first cell so that the first cell selectively binds to the first deposit, and wherein the second deposit is capable of binding to at least one second cell. Single cell binding and cell interaction studies can be carried out.
    • 细胞共培养方法和阵列提供多功能性和高分辨率。 一种方法,包括:提供至少一个基底; 提供至少一个第一尖端,其上设置有至少一个第一细胞粘附材料,以及至少一个第二尖端,其上设置有至少一个第二细胞粘附材料,其中所述第一细胞粘附材料与所述第二细胞粘附材料不同, 粘合材料; 将第一细胞粘附材料从第一末端沉积到基底以形成至少一个第一沉积物,以及将第二细胞粘附材料从第二末端沉积到基底以形成至少一个第二沉积物; 并且其中所述第一和第二沉积物能够提供与至少一个第一细胞的选择性结合,使得所述第一细胞选择性地结合所述第一沉积物,并且其中所述第二沉积物能够结合至少一个第二细胞。 可以进行单细胞结合和细胞相互作用研究。
    • 8. 发明申请
    • CELL ASSAY METHODS AND ARTICLES
    • 细胞测定方法和文章
    • WO2012047808A1
    • 2012-04-12
    • PCT/US2011/054627
    • 2011-10-03
    • NANOINK, INC.NETTIKADAN, SajuCOLLINS, John M.SMETANA, Alexander B.STILES, Paul Leon
    • NETTIKADAN, SajuCOLLINS, John M.SMETANA, Alexander B.STILES, Paul Leon
    • G01N33/50
    • G01N33/5008
    • Versatile, efficient cell assays which can be prepared with use of nanolithography and can be used to test nanomaterials, pharmaceuticals, toxins, and the like. For example, a method comprising: depositing at least one first composition comprising at least one cell adhesion material on at least one substrate to form a pattern which forms an interior space on the substrate within the pattern, depositing in the interior space on the substrate at least one second composition, different from the first, comprising at least one material adapted to affect or potentially affect cell function. Tip-based deposition and direct-write methods can be used for deposition at nanoscale and sub-cellular resolutions. Nanoscopic and atomic force microscope tips can be used. Multiplexing can be carried out.
    • 可以使用纳米光刻技术制备的多功能,高效的细胞测定法,可用于测试纳米材料,药物,毒素等。 例如,一种方法包括:将至少一种包含至少一种细胞粘附材料的第一组合物沉积在至少一个基底上以形成在图案内的衬底上形成内部空间的图案,在衬底上的内部空间中沉积 不同于第一组合物的至少一个第二组合物包含适于影响或潜在地影响细胞功能的至少一种材料。 基于尖端的沉积和直写方法可用于以纳米尺度和亚细胞分辨率进行沉积。 可以使用纳米镜和原子力显微镜尖端。 可以进行多路复用。