Kim Cheol Joo, Hara Eri, Watabe Naoki, Hara Isao, Kimura Shunsaku
Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Kyoto Daigaku-Katsura, Nishikyo-ku, Kyoto, 615-8510, Japan.
Department of Experimental Therapeutics, Institute for Advancement of Clinical and Translational Science, Kyoto University Hospital, 53 Shogoin kawahara-cho, Sakyo-ku, Kyoto, 606-8507, Japan.
J Pept Sci. 2017 Dec;23(12):889-898. doi: 10.1002/psc.3053. Epub 2017 Nov 7.
Poly(sarcosine) displayed on polymeric micelle is reported to trigger a T cell-independent type2 reaction with B1a cells in the mice to produce IgM and IgG3 antibodies. In addition to polymeric micelle, three kinds of vesicles displaying poly(sarcosine) on surface were prepared here to evaluate the amounts and avidities of IgM and IgG3, which were produced in mice, to correlate them with physical properties of the molecular assemblies. The largest amount of IgM was produced after twice administrations of a polymeric micelle of 35 nm diameter (G1). On the other hand, the production amount of IgG3 became the largest after twice administrations of G3 (vesicle of 229 nm diameter) or G4 (vesicle of 85 nm diameter). The augmented avidity of IgG3 after the twice administrations compared with that at the single administration was the highest with G3. These differences in immune responses are discussed in terms of surface density of poly(sarcosine) chains, nanoparticle size, hydrophobic component of poly(L-lactic acid) or (Leu- or Val-Aib) , and membrane elasticity of the nanoparticles. Copyright © 2017 European Peptide Society and John Wiley & Sons, Ltd.
据报道,聚合物胶束上展示的聚(肌氨酸)会在小鼠体内引发与B1a细胞的非T细胞依赖性2型反应,以产生IgM和IgG3抗体。除了聚合物胶束外,本文还制备了三种表面展示聚(肌氨酸)的囊泡,以评估小鼠体内产生的IgM和IgG3的量和亲和力,并将它们与分子聚集体的物理性质相关联。在两次给予直径为35nm的聚合物胶束(G1)后,产生的IgM量最大。另一方面,在两次给予G3(直径为229nm的囊泡)或G4(直径为85nm的囊泡)后,IgG3的产生量最大。与单次给药相比,两次给药后IgG3亲和力的增强在G3中最高。从聚(肌氨酸)链的表面密度、纳米颗粒大小、聚(L-乳酸)或(亮氨酸-或缬氨酸-丙氨酸异二肽)的疏水成分以及纳米颗粒的膜弹性等方面讨论了这些免疫反应的差异。版权所有©2017欧洲肽学会和约翰·威利父子有限公司。