首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Novel metal-chelate affinity adsorbent for purification of immunoglobulin-G from human plasma
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Novel metal-chelate affinity adsorbent for purification of immunoglobulin-G from human plasma

机译:新型金属螯合亲和吸附剂,可从人血浆中纯化免疫球蛋白-G

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Metal-chelating ligand and/or comonomer 2-methacrylolyamidohistidine (MAH) was synthesized by using methacryloyl chloride and L-histidine methyl ester. MAH was characterized by NMR and FTIR. Spherical beads with an average diameter of 75-125 μm were produced by suspension polymerization of methylmethacrylate (MMA) and MAH carried out in an aqueous dispersion medium. Poly (MMA-MAH) beads had a specific surface area of 37.5 M~2/g. Poly (MMA-MAH) beads were characterized by water uptake studies, FTIR, SEM and elemental analysis. Elemental analysis of MAH for nitrogen was estimated as 34.7μmol/g of polymer. Then, Cu~(2+) ions were chelated on the beads. Cu~(2+) -chelated beads with a swelling ratio of 38% were used in the adsorption of human-immunoglobulin G (HIgG) from both aqueous solutions and human plasma. The maximum adsorption capacities of the Cu~(2+)-chelated beads were found to be 12.2 mg/g at pH 6.5 in phosphate buffer and 15.7 mg/g at pH 7.0 in MOPS. Higher adsorption value was obtained from human plasma (up to 54.3 mg/g) with a purity of 90.7%. The metal-chelate affinity beads allowed one-step separation of HIgG from human plasma. The adsorption-desorption cycle was repeated 10 times using the same beads without noticeable loss in their HIgG adsorption capacity.
机译:通过使用甲基丙烯酰氯和L-组氨酸甲酯合成了金属螯合配体和/或共聚单体2-甲基丙烯酰氨基组氨酸(MAH)。 MAH通过NMR和FTIR表征。通过在水性分散介质中进行甲基丙烯酸甲酯(MMA)和MAH的悬浮聚合,制得平均直径为75-125μm的球形珠。聚(MMA-MAH)珠的比表面积为37.5 M〜2 / g。通过吸水研究,FTIR,SEM和元素分析对聚(MMA-MAH)珠进行表征。 MAH对氮的元素分析估计为34.7μmol/ g聚合物。然后,将Cu〜(2+)离子螯合在磁珠上。溶胀率为38%的Cu〜(2+)螯合珠用于从水溶液和人血浆中吸附人免疫球蛋白G(HIgG)。在磷酸盐缓冲液中,pH 6.5时,Cu〜(2+)螯合珠的最大吸附容量为12.2 mg / g,而在MOPS中,pH 7.0时,Cu〜(2+)螯合珠的最大吸附容量为15.7 mg / g。从人血浆中获得更高的吸附值(最高54.3 mg / g),纯度为90.7%。金属螯合物亲和珠允许从人血浆中一步分离HIgG。使用相同的珠子重复10次吸附-解吸循环,而它们的HIgG吸附能力没有明显损失。

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