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Preparation and Preliminary Evaluation of Macroporous Magnetic Agarose Particles for Bioseparation

机译:大孔磁性琼脂糖颗粒的生物分离制备及初步评价

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Macroporous magnetic agarose particles (MMAPs) were prepared with calcium carbonate as the porogent by the water-in-oil suspension thermal regeneration method. MMAPs with good sphericity and appropriate particle size were obtained. The physical properties of the beads were determined and it was found that the water content (92.1%), porosity (94.4%) and mean pore diameter (120.1 nm) of the MMAPs were higher than those for the normal magnetic particles, indicating successful generation of macropores after calcium carbonate addition. Compared with normal magnetic particles, the mass transfer of biomolecules in MMAPs was remarkably enhanced. Finally, MMAPs were modified with 5-amino-benzimidazol (ABI) ligand and the adsorption capacity of IgG reached 153 mg/mL, higher than that of the normal magnetic particles (126 mg/mL). Moreover, adsorption behavior of MMAPs to IgG was little changed after twenty-five recycled use. Hence, MMAPs prepared herein showed great potential for bioseparation.
机译:通过油包水悬浮热再生法制备了以碳酸钙为强力的大孔磁性琼脂糖颗粒(MMAPs)。获得具有良好球形度和适当粒度的MMAP。测定珠子的物理性质,发现MMAP的水含量(92.1%),孔隙率(94.4%)和平均孔径(120.1 nm)高于正常磁性颗粒,表明成功生成了添加碳酸钙后的大孔。与常规磁性颗粒相比,MMAPs中生物分子的传质显着增强。最后,用5-氨基苯并咪唑(ABI)配体修饰了MMAPs,IgG的吸附容量达到153 mg / mL,高于正常的磁性颗粒(126 mg / mL)。此外,MMAPs对IgG的吸附行为在25次循环使用后几乎没有变化。因此,本文制备的MMAP显示出巨大的生物分离潜力。

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