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首页> 外文期刊>Journal of separation science. >Macroporous gels prepared at subzero temperatures as novel materials for chromatography of particulate-containing fluids and cell culture applications
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Macroporous gels prepared at subzero temperatures as novel materials for chromatography of particulate-containing fluids and cell culture applications

机译:在零下温度下制备的大孔凝胶,是用于色谱分析含颗粒流体和细胞培养应用的新型材料

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Macroporous gels (MGs) with a broad variety of morphologies are prepared using the cryotropic gelation technique, i. e. gelation at subzero temperatures. These highly elastic hydrophilic materials can be produced from practically any gel-forming system with a broad range of porosity extending from elastic and porous gels with pore sizes up to 1.0 m to elastic and sponge-like gels with pore sizes up to 100 m. The versatility of the cryogelation technique is demonstrated by use of different chemical reactions (hydrogen bond formation, chemical cross-linking of polymers, free radical polymerization) mainly in an aqueous medium. Appropriate control over solvent crystallization (formation of solvent crystals) and rate of chemical reaction during the cryogelation allows the reproducible preparation of cryogels with tailored properties. Different approaches, such as chemical modification of reactive groups, grafting of the pore surface with an appropriate polymer, or direct copolymerization with functional monomers are used for control of the surface chemistry of MGs. Typically, MGs with pore sizes up to 1.0 m are produced in the shape of beads and MGs with pore size up to 100 m are prepared as monoliths, discs, and sheets. The difference in porous structure of MGs defines the main applications of these porous materials. Elastic beaded MGs are mostly used as carriers for cell and enzyme immobilization or for capture of low-molecular weight targets from particulate-containing fluids in expanded-bed mode. However, the elastic and sponge-like MG monoliths with interconnected pores measuring hundreds of m have been successfully used as monolithic columns for chromatography of particulate-containing fluids (crude cell homogenates, viruses, whole cells, wastewater effluents) and as three-dimensional scaffolds for mammalian cell culture applications.
机译:使用低温凝胶化技术制备具有多种形态的大孔凝胶(MGs),即。 e。在零度以下的温度凝胶化。这些高弹性的亲水性材料可以由几乎任何具有大范围孔隙率的凝胶形成系统生产,其孔隙率从最大孔径为1.0 m的弹性和多孔凝胶到最大孔径为100 m的弹性和海绵状凝胶。冷冻凝胶化技术的多功能性主要通过在水性介质中使用不同的化学反应(氢键形成,聚合物的化学交联,自由基聚合)来证明。冷冻凝胶化过程中对溶剂结晶(溶剂晶体的形成)和化学反应速率的适当控制,可重现制备具有定制性能的冰凝胶。不同的方法,例如反应基团的化学修饰,用合适的聚合物接枝孔表面或与功能性单体直接共聚,可用于控制MG的表面化学。通常,孔径最大为1.0 m的MG以珠粒的形式生产,孔径最大为100 m的MG被制成整料,盘状和片状。 MG的多孔结构的差异决定了这些多孔材料的主要应用。弹性珠粒MG最常用作固定化细胞和酶的载体,或用于在扩展床模式下从含颗粒的流体中捕获低分子量目标的载体。但是,具有数百个相互连接的孔的具有弹性和海绵状的MG整体柱已成功地用作整体柱,用于色谱分离含颗粒的流体(粗细胞匀浆,病毒,全细胞,废水)和三维支架用于哺乳动物细胞培养应用。

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