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    • 2. 发明申请
    • CONTINUOUS SEPARATION METHOD
    • 连续分离方法
    • WO02055538A2
    • 2002-07-18
    • PCT/EP2002/000175
    • 2002-01-10
    • B01D15/18B01D15/20C07K1/22B01D15/08
    • B01J20/285B01D15/18B01D15/1864B01D15/203B01J20/28004C07K1/22
    • The present invention relates to a method of separating a tagged protein product from a raw cell culture comprising the steps of providing a chromatography column com-prising an adsorption resin and a sample of cell culture, passing said sample over said column to capture tagged protein product to the resin, optionally washing the resin by passing a suitable liquid over the column, and eluting the protein product from the col-umn. During the whole processing, the sample, washing liquid and eluent are added at flow rates that maintain an essentially continuous flow throughout the column, and at least two samples are processed in parallel. The invention also relates to an apparatus especially suitable for performing a method of separating a tagged protein product from a raw cell culture.
    • 本发明涉及一种从原始细胞培养物中分离标记的蛋白质产物的方法,包括以下步骤:提供一种色谱柱,该色谱柱与吸附树脂和细胞培养物样品相接触,将所述样品通过所述柱以捕获标记的蛋白质产物 任选地通过使合适的液体通过柱子洗涤树脂,并从柱洗脱蛋白质产物。 在整个处理过程中,样品,洗涤液和洗脱液以保持基本上连续的整个柱的流速加入,并且至少两个样品被并行处理。 本发明还涉及一种特别适于执行从原始细胞培养物中分离标记的蛋白质产物的方法的装置。
    • 4. 发明申请
    • METHOD AND UNIT FOR SEQUENTIAL CENTRIFUGAL STRATIFICATION CHROMATOGRAPHY
    • 用于顺序离心分离色谱的方法和单元
    • WO1985004594A1
    • 1985-10-24
    • PCT/CH1985000054
    • 1985-04-03
    • NYIREDY, SzabolcsERDELMEIER, ClemensSTICHER, Otto
    • B01D15/08
    • G01N30/90B01D15/18G01N30/94G01N2030/381
    • The method and plant disclosed combine the advantages of the preparatory centrifugal stratification chromatography, of the analytical horizontal, anticircular and sequential thin layer chromatography. In this new on-line preparatory method the addition of solvent may be varied in parallel, locally and temporally. It is thus possible to improve sections of the integral chromatogram in their separation by selecting for these partial problems the optimum composition of the solvent. The separations are basically obtained in two different ways: 1. The circular separations are effected by means of the centrifugal force by using a sequential solvent supply (20), the separation taking place from the inside to the outside. The separated substances may be brought back to the inner part of the layer by recycling. 2. The anticircular separations are performed by means of the capillary force by using an annular-shaped solvent supply (19), the substance zones being concentrated and/or developed from the outside to the inside. The possibilities of circular and anticircular applications may be combined as desired so that the separation path may be prolonged practically in an illimited manner and thus the capacity and separation power may be considerably increased.
    • 所公开的方法和工艺结合了准备离心分层色谱,分析水平,反循环和顺序薄层色谱的优点。 在这种新的在线准备方法中,溶剂的添加可以在本地和时间上并行地变化。 因此,通过选择溶剂的最佳组成,可以对其分离中的积分色谱图进行改进。 分离基本上以两种不同的方式获得:1.通过使用顺序溶剂供应(20)通过离心力实现圆形分离,分离从内部到外部进行。 分离的物质可以通过再循环回到层的内部。 通过使用环形溶剂供应(19)通过毛细管力进行反圆分离,物质区域从外部到内部集中和/或显影。 可以根据需要组合圆形和反圆形应用的可能性,使得实际上可以以不必要的方式延长分离路径,从而可以显着增加容量和分离功率。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR INTRODUCING A SAMPLE INTO A SEPARATION UNIT OF A CHROMATOGRAPHY SYSTEM
    • 将样品引入色谱系统的分离单元的装置和方法
    • WO2015183290A1
    • 2015-12-03
    • PCT/US2014/040073
    • 2014-05-29
    • AGILENT TECHNOLOGIES, INC.
    • WIKFORS, Edwin, E.
    • B01D15/40B01D15/14B01D15/30G01N30/02G01N30/16
    • B01D15/14B01D15/18B01D15/1878B01D15/325B01D15/40G01N30/16G01N30/20G01N30/32G01N30/34G01N30/38G01N30/463G01N30/465G01N2030/324G01N2030/342
    • An apparatus introduces a sample into a separation unit of a chromatography system with a mobile phase, including first and second mobile phase components. The apparatus includes first and second pump systems, and an injection unit. The first pump system provides the first mobile phase component, first and second portions of the first mobile phase component flowing through first and second branches, respectively. The second pump system provides the second mobile phase component, first and second portions of the second mobile phase component flowing through third and fourth branches, respectively. The injection unit receives a combined stream of the first portions of the first and second mobile phase components provided via the first and third branches, respectively, and to injects the sample into the combined stream to form a sample-containing stream. The sample-containing stream is subsequently combined with the second portions of the first and second mobile phase components provided via the second and fourth branches, respectively, to form a diluted sample-containing stream, which flows to the separation unit for separating sample constituents.
    • 装置将样品引入具有流动相的色谱系统的分离单元,其包括第一和第二流动相组分。 该装置包括第一和第二泵系统和注射单元。 第一泵系统提供第一流动相分量,第一流动相分量的第一和第二部分分别流经第一和第二分支。 第二泵系统提供第二流动相分量,第二流动相组分的第一和第二部分分别流经第三和第四分支。 注射单元接收经由第一和第三分支提供的第一和第二流动相组分的第一部分的组合流,并将样品注入组合流中以形成含样品的流。 随后将含样品流与经由第二和第四分支提供的第一和第二流动相组分的第二部分组合以形成稀释的含样品流,其流到分离单元以分离样品组分。
    • 9. 发明申请
    • CONTINUOUS SEPARATION METHOD
    • 连续分离方法
    • WO02055538A3
    • 2003-01-30
    • PCT/EP0200175
    • 2002-01-10
    • AMERSHAM BIOSCIENCES ABPLESS THOMAS
    • PLESS THOMAS
    • B01D15/18B01D15/20C07K1/22B01D15/08
    • B01J20/285B01D15/18B01D15/1864B01D15/203B01J20/28004C07K1/22
    • The present invention relates to a method of separating a tagged protein product from a raw cell culture comprising the steps of providing a chromatography column com-prising an adsorption resin and a sample of cell culture, passing said sample over said column to capture tagged protein product to the resin, optionally washing the resin by passing a suitable liquid over the column, and eluting the protein product from the col-umn. During the whole processing, the sample, washing liquid and eluent are added at flow rates that maintain an essentially continuous flow throughout the column, and at least two samples are processed in parallel. The invention also relates to an apparatus especially suitable for performing a method of separating a tagged protein product from a raw cell culture.
    • 本发明涉及一种从原始细胞培养物中分离标记的蛋白质产物的方法,包括以下步骤:提供一种色谱柱,该色谱柱与吸附树脂和细胞培养物样品相接触,将所述样品通过所述柱以捕获标记的蛋白质产物 任选地通过使合适的液体通过柱子洗涤树脂,并从柱洗脱蛋白质产物。 在整个处理过程中,样品,洗涤液和洗脱液以保持基本上连续的整个柱的流速加入,并且至少两个样品被并行处理。 本发明还涉及一种特别适于执行从原始细胞培养物中分离标记的蛋白质产物的方法的装置。
    • 10. 发明申请
    • DISPOSABLE HORIZONTAL OR RADIAL FLOW TYPE CHROMATOGRAPHIC COLUMN
    • 可排放的水平或径向流式色谱柱
    • WO2012081983A1
    • 2012-06-21
    • PCT/NL2011/050858
    • 2011-12-16
    • RAEDTS, Marcellus Johannes Hubertus
    • RAEDTS, Marcellus Johannes Hubertus
    • G01N30/38G01N30/50G01N30/60B01D15/22
    • B01D15/18B01D15/22G01N30/38G01N30/50G01N30/60G01N30/6017G01N30/603G01N30/6091G01N2030/386
    • A liquid chromatography column, utilizing horizontal or radial flow of sample material passing there through, preferably in inward direction, comprising: a housing defining a chamber therein and including at least one removable end section, e.g. screw lid; a first and second longitudinally extending porous frits positioned within said chamber of said housing; a bed or packing of, preferably particulate, chromatographic separation material positioned within said chamber of said housing and intermediate said porous frits, the first of said porous frits being adjacent said housing and an inlet channel, the second of said porous frits being positioned adjacent a core member and an outlet channel; distribution means operatively connected to said inlet channel; collector means operatively connected to said outlet channel, said distribution means and said inlet channel being constructed to direct associated material to be separated in said bed evenly across a longitudinal length of said bed in a substantially horizontal direction.
    • 液相色谱柱,利用样品材料的水平或径向流动优选地在内部通过,包括:壳体,其中限定室,并且包括至少一个可移除端部,例如, 螺丝盖; 位于所述壳体的所述室内的第一和第二纵向延伸的多孔玻璃料; 位于所述壳体的所述室内且位于所述多孔玻璃料之间的床或填充物,优选颗粒状的色谱分离材料,所述多孔玻璃料中的第一个邻近所述壳体和入口通道,所述多孔玻璃料中的第二个位于邻近 核心成员和出口渠道; 分配装置可操作地连接到所述入口通道; 收集器装置可操作地连接到所述出口通道,所述分配装置和所述入口通道被构造成在基本上水平的方向上将所述床中的待分离的相关材料均匀地引导到所述床的纵向长度上。