Qian Hao, Lin Zhiyong, Xu Huaming, Chen MingQin
College of Material Science and Engineering, Huaqiao University, Quanzhou, 362021 Fujian, PR China.
Biotechnol Prog. 2009 Mar-Apr;25(2):376-83. doi: 10.1002/btpr.105.
A rapid and effective method to specifically isolate the antibodies from human serum was presented based on the fast magnetic separation and specific adsorption of the novel thiophilic magnetic polymer nanospheres, which were synthesized by using miniemulsion copolymerization. After the thiophilic heterocyclic ligands of 2-mercaptonicotinic acid were first activated via divinyl sulfone, they were immobilized on the surface of these magnetic nanospheres, through which the strong specificity to immunoglobulin G was evidently expressed in the isolation of antibodies from human serum. The mild conditions used in the process, including the physiological pH range, low temperature, and low ion strength, were so favorable for keeping the biological activity of antibodies, which resulted in their bioactivity purity to exceed 99%. The efficient isolation, simplicity process, mild conditions, and the conventional equipments required make this technology so attractive to purify antibodies from human serum.
基于新型嗜硫磁性聚合物纳米球的快速磁分离和特异性吸附,提出了一种从人血清中特异性分离抗体的快速有效方法。该纳米球通过细乳液共聚合成。2-巯基烟酸的嗜硫杂环配体首先通过二乙烯基砜活化,然后固定在这些磁性纳米球表面,在从人血清中分离抗体时,其对免疫球蛋白G表现出明显的强特异性。该过程中使用的温和条件,包括生理pH范围、低温和低离子强度,非常有利于保持抗体的生物活性,其生物活性纯度超过99%。高效的分离、简单的过程、温和的条件以及所需的常规设备,使得该技术在从人血清中纯化抗体方面极具吸引力。