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    • 5. 发明授权
    • Microfluidic system and method for assembling and for subsequently cultivating, and subsequent analysis of complex cell arrangements
    • 微流体系统以及用于组装和随后培养以及随后分析复杂细胞装置的方法
    • US08268152B2
    • 2012-09-18
    • US12896714
    • 2010-10-01
    • Martin StelzleBrigitte AngresMassimo KubonJulia SchuetteBritta HagmeyerFelix Holzner
    • Martin StelzleBrigitte AngresMassimo KubonJulia SchuetteBritta HagmeyerFelix Holzner
    • B01D57/02
    • C12M23/16B01L3/5027C12M21/08C12M33/00C12M35/02
    • A microfluidic system (12) for assembling and subsequently investigating complex cell arrangements has a three-dimensional microstructure (11) in which the cell culture is assembled, cultivated and investigated. At least two microchannel segments (16, 17) through which the microstructure (11) can be perfused from outside with a medium (21, 22) run in the microstructure (11), whereby the microchannel segments (16, 17) run at least in sections approximately parallel or equidistant to one another. The two microchannel segments (16, 17) are separated from one another by a wall structure (25) in which at least one aperture (26) connecting the two microchannel segments (16, 17) is provided. An electrode arrangement (27) is provided in or on the microstructure (11) in order to generate an inhomogeneous electric field (28) in the region of the at least one aperture (26). A cell arrangement is assembled in this microstructure (11) by supplying medium (21, 22) with cells (23, 24) for assembling the cell culture in the microstructure (11), with the inhomogeneous electric field (28) determined by the microstructure (11) bringing about the assembling of the cell arrangement from the supplied cells (23, 24).
    • 用于组装和随后调查复合细胞装置的微流体系统(12)具有其中组装,培养和研究细胞培养物的三维微结构(11)。 至少两个微通道段(16,17),微结构(11)可以通过该微通道段(16,17)从外部用介质(21,22)灌注到微结构(11)中,由此微通道段(16,17)至少运行 在大致彼此平行或等距的部分。 两个微通道段(16,17)通过壁结构(25)彼此分开,其中提供连接两个微通道段(16,17)的至少一个孔(26)。 在微结构(11)中或其上设置电极装置(27),以在所述至少一个孔(26)的区域中产生不均匀的电场(28)。 通过向培养基(21,22)提供用于将细胞培养物组装在微结构(11)中的细胞(23,24),通过由微结构(11,22)确定的不均匀电场(28),在该微结构(11) (11)使得从所提供的电池(23,24)组装电池装置。
    • 6. 发明申请
    • MICROFLUIDIC SYSTEM AND METHOD FOR ASSEMBLING AND FOR SUBSEQUENTLY CULTIVATING, AND SUBSEQUENT ANALYSIS OF COMPLEX CELL ARRANGEMENTS
    • 用于组装和后续培养的微流体系统和方法以及复合细胞安排的后续分析
    • US20110079513A1
    • 2011-04-07
    • US12896714
    • 2010-10-01
    • Martin StelzleBrigitte AngresMassimo KubonJulia SchuetteBritta HagmeyerFelix Holzner
    • Martin StelzleBrigitte AngresMassimo KubonJulia SchuetteBritta HagmeyerFelix Holzner
    • G01N27/447
    • C12M23/16B01L3/5027C12M21/08C12M33/00C12M35/02
    • A microfluidic system (12) for assembling and subsequently investigating complex cell arrangements has a three-dimensional microstructure (11) in which the cell culture is assembled, cultivated and investigated. At least two microchannel segments (16, 17) through which the microstructure (11) can be perfused from outside with a medium (21, 22) run in the microstructure (11), whereby the microchannel segments (16, 17) run at least in sections approximately parallel or equidistant to one another. The two microchannel segments (16, 17) are separated from one another by a wall structure (25) in which at least one aperture (26) connecting the two microchannel segments (16, 17) is provided. An electrode arrangement (27) is provided in or on the microstructure (11) in order to generate an inhomogeneous electric field (28) in the region of the at least one aperture (26). A cell arrangement is assembled in this microstructure (11) by supplying medium (21, 22) with cells (23, 24) for assembling the cell culture in the microstructure (11), with the inhomogeneous electric field (28) determined by the microstructure (11) bringing about the assembling of the cell arrangement from the supplied cells (23, 24).
    • 用于组装和随后调查复合细胞装置的微流体系统(12)具有其中组装,培养和研究细胞培养物的三维微结构(11)。 至少两个微通道段(16,17),微结构(11)可以通过该微通道段(16,17)从外部用介质(21,22)灌注到微结构(11)中,由此微通道段(16,17)至少运行 在大致彼此平行或等距的部分。 两个微通道段(16,17)通过壁结构(25)彼此分开,其中提供连接两个微通道段(16,17)的至少一个孔(26)。 在微结构(11)中或其上设置电极装置(27),以在所述至少一个孔(26)的区域中产生不均匀的电场(28)。 通过向培养基(21,22)提供用于将细胞培养物组装在微结构(11)中的细胞(23,24),通过由微结构(11,22)确定的不均匀电场(28),在该微结构(11) (11)使得从所提供的电池(23,24)组装电池装置。