Targeting the Antibody Fab Region Using Light-Induced Indole-3-Butyric Acid Functionalized Magnetic Microspheres

IF 2.8 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL
Yu Yi, Yao Li, Sa Wang, Yuting Liang, Jianfeng Mei, Guoqing Ying
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引用次数: 0

Abstract

A novel light-controlled adsorption system for direct targeting of antibody Fab fragments was developed by utilizing indole-3-butyric acid functionalized magnetic microspheres. Indole-3-butyric acid, serving as a specific small molecule ligand, was successfully conjugated to amine-functionalized magnetic microspheres via a 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide/N-hydroxysuccinimide activation strategy. Under illumination at a particular wavelength, the indole-3-butyric acid ligand generated reactive radicals that interacted with the nucleotide-binding sites of antibody Fab fragments, enabling effective affinity adsorption. Static adsorption experiments demonstrated that the system's adsorption behavior obeys the Langmuir model (KF = 0.122, R2 = 0.996), indicating a homogeneous adsorption process. Kinetic studies further revealed that the adsorption process follows a second-order kinetic model (k2 = 0.0257, R2 = 0.989). When compared with conventional antibody adsorption systems, this new system exhibited specific targeting of Fab fragments, enhanced selectivity, and adjustable properties. In particular, at pH 7.0, effective elution was achieved by increasing the salt concentration, with the eluted product retaining antigen-binding activity. The purification recovery rate exceeded 98%, and the system maintained effective adsorption and elution of Fab fragments across various pH conditions. Besides, even after 10 reuse cycles, the system retained more than 96% of its efficiency, thus presenting excellent regenerability and reusability. In summary, the developed light-controlled antibody Fab region adsorption system offers a highly efficient, stable, and cost-effective approach. It is also expected to become one of the most effective methods for antibody Fab purification in the future.

利用光致吲哚-3-丁酸功能化磁微球靶向抗体Fab区
利用吲哚-3-丁酸功能化磁微球制备了一种新型光控吸附系统,可直接靶向抗体Fab片段。吲哚-3-丁酸作为一种特殊的小分子配体,通过1-乙基-3-(3-二甲氨基丙基)碳二亚胺/ n -羟基琥珀酰亚胺活化策略,成功地偶联到胺功能化的磁性微球上。在特定波长的光照下,吲哚-3-丁酸配体产生活性自由基,与抗体Fab片段的核苷酸结合位点相互作用,实现有效的亲和吸附。静态吸附实验表明,该体系的吸附行为符合Langmuir模型(KF = 0.122, R2 = 0.996),为均匀吸附过程。动力学研究进一步表明,吸附过程符合二级动力学模型(k2 = 0.0257, R2 = 0.989)。与传统的抗体吸附系统相比,该新系统具有特异性靶向Fab片段、增强的选择性和可调特性。特别是,在pH 7.0时,通过增加盐浓度实现有效洗脱,洗脱产物保持抗原结合活性。纯化回收率超过98%,在各种pH条件下均能保持对Fab片段的有效吸附和洗脱。此外,即使经过10次重复使用,系统仍保持了96%以上的效率,具有良好的可再生性和可重复使用性。综上所述,所开发的光控抗体Fab区吸附系统提供了一种高效、稳定、经济的方法。它也有望成为未来抗体Fab纯化最有效的方法之一。
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来源期刊
Journal of separation science
Journal of separation science 化学-分析化学
CiteScore
6.30
自引率
16.10%
发文量
408
审稿时长
1.8 months
期刊介绍: The Journal of Separation Science (JSS) is the most comprehensive source in separation science, since it covers all areas of chromatographic and electrophoretic separation methods in theory and practice, both in the analytical and in the preparative mode, solid phase extraction, sample preparation, and related techniques. Manuscripts on methodological or instrumental developments, including detection aspects, in particular mass spectrometry, as well as on innovative applications will also be published. Manuscripts on hyphenation, automation, and miniaturization are particularly welcome. Pre- and post-separation facets of a total analysis may be covered as well as the underlying logic of the development or application of a method.
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