免疫原性
生物结合
癌症治疗
抗体
癌症
体内
靶向治疗
癌症研究
医学
癌症影像学
结合
化学
免疫学
生物
生物化学
内科学
生物技术
数学分析
数学
作者
Wei Kang,Chuanfeng Ding,Danni Zheng,Ma Xiao,Yi Lun,Xinyi Tong,Chuang Wu,Chuang Xue,Yongsheng Yu,Qian Zhou
标识
DOI:10.1177/15330338211010117
摘要
Conventional antibody-based targeted cancer therapy is one of the most promising avenues of successful cancer treatment, with the potential to reduce toxic side effects to healthy cells surrounding tumor cells. However, the full potential of antibodies is severely limited due to their large size, low stability, slow clearance, and high immunogenicity. Alternatively, recently discovered nanobodies, which are the smallest naturally occurring antigen-binding format, have shown great potential for addressing these limitations. Bioconjugation of nanobodies to functional groups such as toxins, enzymes, radionucleotides, and fluorophores can improve the efficacy and potency of nanobodies, enhance their in vivo pharmacokinetics, and expand the range of potential applications. Herein, we review the superior characteristics of nanobodies in comparison to conventional antibodies and provide insight into recent developments in nanobody conjugates for targeted cancer therapy and imaging.
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