CAS Key Laboratory of Biobased Materials, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, No. 189 Songling Road, Qingdao 266101, China.
Shenzhen Innova Nanobodi Co., Ltd., No. 7018 Caitian Road, Shenzhen 518000, China.
Mol Immunol. 2018 Apr;96:37-47. doi: 10.1016/j.molimm.2018.02.012. Epub 2018 Feb 22.
Nanobodies represent the next-generation antibody-derived biologics with significant advances over conventional antibodies. Several rapid and robust techniques for isolating highly specific nanobodies have been developed. Antigen specific nanobodies are selected from constructed nanobody libraries, which can be classified into 3 main types: immune library, naïve library, and semisynthetic/synthetic library. The immune library is the most widely used strategy for nanobody screening. Target specific nanobodies are highly enriched in immune libraries than in non-immune libraries; however, it is largely limited by the natural antigenicity of antigens. The naïve library is thus developed. Despite the lack of somatic maturation, protein engineering can be employed to significantly increase the affinities of selected binders. However, a substantial amount of blood samples collected from a large number of individual animals is a prerequisite to ensure the diversity of the naïve library. With this issue considered, the semisynthetic/synthetic library may be a promising path toward obtaining a limitless source of nanobodies against a variety of antigens without the need of animals. In this review, we summarize the state-of-the-art screening technologies with different libraries. The approaches presented here can further boost the diverse applications of nanobodies in biomedicine and biotechnology.
纳米抗体是新一代抗体衍生的生物制剂,在常规抗体方面有重大突破。已经开发出了几种快速而强大的分离高度特异性纳米抗体的技术。抗原特异性纳米抗体是从构建的纳米抗体文库中筛选出来的,可分为 3 种主要类型:免疫文库、天然文库和半合成/合成文库。免疫文库是筛选纳米抗体最广泛使用的策略。与非免疫文库相比,免疫文库中高度富集了针对特定靶标的纳米抗体;然而,这在很大程度上受到抗原天然抗原性的限制。因此开发了天然文库。尽管缺乏体细胞成熟,但可以采用蛋白质工程技术显著提高所选结合物的亲和力。然而,为了确保天然文库的多样性,需要从大量个体动物中收集大量的血液样本。考虑到这个问题,半合成/合成文库可能是一种很有前途的途径,可以获得针对各种抗原的无限量纳米抗体,而无需动物。在这篇综述中,我们总结了不同文库的最新筛选技术。这里介绍的方法可以进一步推动纳米抗体在生物医学和生物技术中的多样化应用。