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首页> 外文期刊>Clinical & developmental immunology. >Effect of Chitosan and Liposome Nanoparticles as Adjuvant Codelivery on the Immunoglobulin G Subclass Distribution in a Mouse Model
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Effect of Chitosan and Liposome Nanoparticles as Adjuvant Codelivery on the Immunoglobulin G Subclass Distribution in a Mouse Model

机译:壳聚糖和脂质体纳米粒子作为辅助代码传递对小鼠模型中免疫球蛋白G亚类分布的影响。

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Background We investigate the immunogenic properties of chitosan and liposome nanoparticles as adjuvant codelivery against a commercial pneumococcal conjugate vaccine (PCV) in an animal model. Methods The chitosan and liposome nanoparticles were prepared by ionic gelation and dry methods, respectively. The PCV immunization was performed intradermally in the presence of adjuvants and booster injections which were given without an adjuvant. The Quil-A? was used as a control adjuvant. The ELISA was performed to measure the antibodies against pneumococcal type 14 polysaccharide (Pn14PS). Results The level of total antibodies against Pn14PS antigen was no different between the mouse groups with or without adjuvant codelivery. Codelivery of the PCV with chitosan nanoparticles as well as the Quil-A adjuvant elicited IgG1, IgG2a, IgG2b, and IgG3 antibodies. Meanwhile, codelivery of liposome nanoparticles elicited mainly IgG1 antibodies against the Pn14PS. Conclusions The chitosan and liposome nanoparticles as adjuvant codelivery were successfully synthesized. These nanoparticles have different shapes in particle formation, liposome nanoparticle with their unilamellar shape and chitosan nanoparticles in large shape due to the aggregation of small-size particles. Codelivery of chitosan nanoparticles has more effect on the IgG subclass antibody production than that of liposome nanoparticles in a mouse model.
机译:背景我们研究了壳聚糖和脂质体纳米颗粒作为动物模型中针对商业肺炎球菌结合疫苗(PCV)的辅助代码传递的免疫原性。方法分别采用离子凝胶法和干法制备壳聚糖和脂质体纳米粒。 PCV免疫是在佐剂和无佐剂的情况下在皮内进行的。 Quil-A?被用作对照佐剂。进行ELISA以测量针对肺炎球菌14型多糖(Pn14PS)的抗体。结果在有或没有佐剂代码传递的小鼠组之间,针对Pn14PS抗原的总抗体水平没有差异。 PCV与壳聚糖纳米颗粒以及Quil-A佐剂的代码传递导致IgG1,IgG2a,IgG2b和IgG3抗体。同时,脂质体纳米粒子的代码传递主要引发针对Pn14PS的IgG1抗体。结论成功合成了壳聚糖和脂质体纳米粒作为辅助代码传递。这些纳米颗粒具有不同的颗粒形成形状,具有单层形状的脂质体纳米颗粒和由于小尺寸颗粒的聚集而具有大形状的壳聚糖纳米颗粒。在小鼠模型中,壳聚糖纳米粒子的共传递对IgG亚类抗体的产生比脂质体纳米粒子的传递更具影响。

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