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一种基于去污剂的高产量 IgG 样双特异性抗体制备方法。

A detergent-based procedure for the preparation of IgG-like bispecific antibodies in high yield.

机构信息

Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh 202002, India.

出版信息

Sci Rep. 2016 Dec 16;6:39198. doi: 10.1038/srep39198.

Abstract

Bispecific antibodies (BsAbs), with the ability to recognize two different epitopes simultaneously, offer remarkable advantages in bioassays, cancer therapy, biosensors, and enzyme electrodes. Preparation and purification of BsAbs in adequate quantities remains a major hurdle in their use in various applications. Poor yield is also the principal limitation in the preparation of BsAbs by the redox procedure. IgG with reduced inter-heavy chain disulfides do not dissociate into half molecules at neutral pH. In this study, we report that the dissociation occurs in presence of sodium dodecyl sulphate (SDS) and inclusion of the detergent during the redox procedure results in remarkable increase in the formation of the BsAbs. Exposure of antibodies to 0.1% (w/v) SDS causes only minor loss in secondary/tertiary structure and the ability to bind the antigen. The BsAbs prepared using the modified redox procedure that recognize the antigens HRP and α-LA were prepared and successfully employed for detecting α-LA in milk/dairy products by ELISA and dot blot techniques. BsAbs were also prepared from partially purified immunoglobulin gamma (IgG). This work shows for the first time that SDS, by dissociating IgG with reduced inter-heavy chain disulfides into half molecules, markedly enhances the formation of BsAbs by the redox procedure.

摘要

双特异性抗体(BsAbs)能够同时识别两个不同的表位,在生物测定、癌症治疗、生物传感器和酶电极等方面具有显著优势。在各种应用中,大量制备和纯化 BsAbs 仍然是一个主要障碍。还原法制备 BsAbs 的主要限制也是产量低。在中性 pH 值下,还原的重链间二硫键减少的 IgG 不会解离成半分子。在这项研究中,我们报告说,在存在十二烷基硫酸钠(SDS)的情况下会发生解离,并且在还原过程中包含去污剂会导致 BsAbs 的形成显著增加。抗体暴露于 0.1%(w/v)SDS 只会导致二级/三级结构和结合抗原的能力略有损失。使用改良的还原法制备的能够识别 HRP 和 α-LA 抗原的 BsAbs 已被制备,并成功用于通过 ELISA 和斑点印迹技术检测牛奶/乳制品中的 α-LA。还从部分纯化的免疫球蛋白γ(IgG)中制备了 BsAbs。这项工作首次表明,SDS 通过将还原的重链间二硫键减少的 IgG 解离成半分子,显著增强了还原法制备 BsAbs 的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf19/5159798/cdb46e17fb2e/srep39198-f1.jpg

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