Polymer Chemistry Division, Chemical Resources Laboratory, Tokyo Institute of Technology , R1-11, 4529 Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.
Biomacromolecules. 2016 Feb 8;17(2):446-53. doi: 10.1021/acs.biomac.5b01335. Epub 2016 Jan 4.
Direct intracellular delivery of antibodies has gained much attention, although only a few agents have been developed, and none of them has reached clinical stages. The main obstacles here are the insufficient characteristics of delivery systems including stability and appropriate ability for intracellular antibody release. We tailored the structure of polyion complex (PIC) micelles by loading transiently charge-converted antibody derivatives for achieving enhanced stability, delivery to cytosol, and precise antigen recognition inside cells. Citraconic anhydride was used for the charge conversion of the antibody; the optimized degree of modification was identified to balance the stability of PIC micelles in the extracellular compartment and prompt pH-triggered disintegration after their translocation into the acidic endosomal compartment of target cells. The use of a mixture of homo- and block-catiomers in an appropriate ratio to construct PIC micelles substantially enhanced the endosomal escaping efficacy of the loaded antibody, leading to improved recognition of intracellular antigens.
直接将抗体导入细胞内受到了广泛关注,尽管已经开发出了一些试剂,但没有一种达到临床阶段。这里的主要障碍是输送系统的特性不足,包括稳定性和适当的细胞内抗体释放能力。我们通过加载瞬时转换电荷的抗体衍生物来调整聚离子复合物(PIC)胶束的结构,以实现增强的稳定性、向细胞质的输送以及细胞内精确的抗原识别。我们使用顺丁烯二酸酐来实现抗体的电荷转换;确定了最佳的修饰程度,以平衡 PIC 胶束在细胞外区室中的稳定性和在转移到靶细胞的酸性内体区室后迅速触发的崩解。使用合适比例的同型和嵌段两性离子构建 PIC 胶束,可显著提高负载抗体的内体逃逸效果,从而改善对细胞内抗原的识别。