Yuba Eiji, Sugahara Yoshikatsu, Yoshizaki Yuta, Shimizu Takeyuki, Kasai Michiyuki, Udaka Keiko, Kono Kenji
Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 5998531, Japan.
Department of Immunology, School of Medicine, Kochi University, Nankoku, Kochi 7838505, Japan.
Biomater Sci. 2021 Apr 21;9(8):3076-3089. doi: 10.1039/d0bm01813a. Epub 2021 Mar 8.
For the establishment of advanced medicines such as cancer immunotherapy, high performance carriers that precisely deliver biologically active molecules must be developed to target organelles of the cells and to release their contents there. From the viewpoint of antigen delivery, endosomes are important target organelles because they contain immune-response-related receptors and proteins of various types. To obtain carriers for precision endosome delivery, a novel type of polyamidoamine dendron-based lipid having pH-sensitive terminal groups was synthesized for this study. Liposomes were prepared using these pH-sensitive dendron-based lipids and egg yolk phosphatidylcholine. Their pH-responsive properties and performance as an endosome delivery carrier were investigated. pH-Sensitive dendron lipid-based liposomes retained water-soluble molecules at neutral pH but released them under weakly acidic conditions. Particularly, liposomes containing CHexDL-G1U exhibited highly sensitive properties responding to very weakly acidic pH. These dendron lipid-based liposomes released the contents specifically in the endosome. The timing of content release can be controlled by selecting pH-sensitive dendron lipids for liposome preparation. Significant tumor regression was induced in tumor-bearing mice by the administration of CHexDL-G1U-modified liposomes containing the model antigenic protein. Furthermore, CHexDL-G1U-modified liposomes induced WT1 tumor antigenic peptide-specific helper T cell proliferation. The results demonstrate that dendron lipid-based liposomes are useful as a potent vaccine for cancer immunotherapy.
对于癌症免疫疗法等先进药物的研发,必须开发出能够精确递送生物活性分子的高性能载体,以靶向细胞的细胞器并在其中释放其内容物。从抗原递送的角度来看,内体是重要的靶细胞器,因为它们含有各种类型的免疫反应相关受体和蛋白质。为了获得用于精确递送内体的载体,本研究合成了一种新型的具有pH敏感末端基团的基于聚酰胺胺树枝状分子的脂质。使用这些基于pH敏感树枝状分子的脂质和蛋黄磷脂酰胆碱制备脂质体。研究了它们的pH响应特性以及作为内体递送载体的性能。基于pH敏感树枝状分子脂质的脂质体在中性pH下保留水溶性分子,但在弱酸性条件下释放它们。特别是,含有CHexDL-G1U的脂质体表现出对非常弱的酸性pH高度敏感的特性。这些基于树枝状分子脂质的脂质体在内体中特异性地释放内容物。可以通过选择用于制备脂质体的pH敏感树枝状分子脂质来控制内容物释放的时间。通过给予含有模型抗原蛋白的CHexDL-G1U修饰的脂质体,在荷瘤小鼠中诱导了显著的肿瘤消退。此外,CHexDL-G1U修饰的脂质体诱导了WT1肿瘤抗原肽特异性辅助性T细胞增殖。结果表明,基于树枝状分子脂质的脂质体作为癌症免疫疗法的有效疫苗是有用的。