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分子印迹合成抗体:从化学设计到生物医学应用

Molecularly Imprinted Synthetic Antibodies: From Chemical Design to Biomedical Applications.

作者信息

Xu Jingjing, Miao Haohan, Wang Jixiang, Pan Guoqing

机构信息

Institute for Advanced Materials, School of Materials Science and Engineering, Jiangsu University, Zhenjiang, Jiangsu, 212013, P. R. China.

Sino-European School of Technology of Shanghai University, Shanghai University, Shanghai, CN-200444, P. R. China.

出版信息

Small. 2020 Jul;16(27):e1906644. doi: 10.1002/smll.201906644. Epub 2020 Feb 26.

Abstract

Billions of dollars are invested into the monoclonal antibody market every year to meet the increasing demand in clinical diagnosis and therapy. However, natural antibodies still suffer from poor stability and high cost, as well as ethical issues in animal experiments. Thus, developing antibody substitutes or mimics is a long-term goal for scientists. The molecular imprinting technique presents one of the most promising strategies for antibody mimicking. The molecularly imprinted polymers (MIPs) are also called "molecularly imprinted synthetic antibodies" (MISAs). The breakthroughs of key technologies and innovations in chemistry and material science in the last decades have led to the rapid development of MISAs, and their molecular affinity has become comparable to that of natural antibodies. Currently, MISAs are undergoing a revolutionary transformation of their applications, from initial adsorption and separation to the rising fields of biomedicine. Herein, the fundamental chemical design of MISAs is examined, and then current progress in biomedical applications is the focus. Meanwhile, the potential of MISAs as qualified substitutes or even to transcend the performance of natural antibodies is discussed from the perspective of frontier needs in biomedicines, to facilitate the rapid development of synthetic artificial antibodies.

摘要

每年都有数十亿美元投入到单克隆抗体市场,以满足临床诊断和治疗中不断增长的需求。然而,天然抗体仍然存在稳定性差、成本高以及动物实验中的伦理问题。因此,开发抗体替代物或模拟物是科学家们的一个长期目标。分子印迹技术是抗体模拟最具前景的策略之一。分子印迹聚合物(MIPs)也被称为“分子印迹合成抗体”(MISAs)。过去几十年化学和材料科学领域关键技术的突破与创新推动了MISAs的快速发展,其分子亲和力已变得与天然抗体相当。目前,MISAs正在经历应用上的革命性转变,从最初的吸附和分离到新兴的生物医学领域。在此,我们研究了MISAs的基本化学设计,随后重点关注其在生物医学应用方面的当前进展。同时,从生物医学前沿需求的角度讨论了MISAs作为合格替代物甚至超越天然抗体性能的潜力,以促进合成人工抗体的快速发展。

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