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壳聚糖:β-葡聚糖颗粒作为乙肝抗原的新型佐剂。

Chitosan:β-glucan particles as a new adjuvant for the hepatitis B antigen.

机构信息

Center for Neuroscience and Cell Biology, University of Coimbra, 3004-517 Coimbra, Portugal; Faculty of Pharmacy, University of Coimbra, Pólo das Ciências da Saúde Azinhaga de Santa Comba, 3000-548 Coimbra, Portugal.

Center for Neuroscience and Cell Biology, University of Coimbra, 3004-517 Coimbra, Portugal; Faculty of Pharmacy, University of Coimbra, Pólo das Ciências da Saúde Azinhaga de Santa Comba, 3000-548 Coimbra, Portugal.

出版信息

Eur J Pharm Biopharm. 2018 Oct;131:33-43. doi: 10.1016/j.ejpb.2018.07.018. Epub 2018 Jul 23.

Abstract

The development of new vaccine adjuvants is urgently needed not only to enable new routes of vaccine administration but mostly to go beyond protective humoral immunity, often insufficient to fight infectious diseases. The association of two or more immunopotentiators or mimicking pathogen physicochemical properties are strategies that can favor powerful and more balanced Th1/Th2 immune responses. Therefore, the present work aimed to combine both chitosan and β-glucan biopolymers in the same particle, preferably with surface β-glucan localization to simulate the cell wall of some pathogens and to stimulate the immune cells expressing the Dectin-1 receptor. Chitosan:β-glucan particles (ChiGluPs) were developed through a chitosan precipitation method. The chitosan was precipitated into a β-glucan alkaline solution followed by genipin crosslink. The optimized method produced particles with a mean diameter of 837 nm for ChiPs and 1274 nm for ChiGluPs. β-glucan surface location was confirmed by zeta potential measurements (+24 mV for ChiGluPs and +36 mV for ChiPs) and zeta potential titration. These new particles showed high antigen loading efficacy and low cytotoxicity. Mice vaccination studies revealed that both ChiPs and ChiGluPs had an adjuvant effect for the hepatitis B surface antigen (HBsAg), with ChiGluPs resulting in serum anti-HBsAg total IgG 16-fold higher than ChiPs, when administered with 1.5 µg HBsAg per dose. Specifically, IgG1 subclass was 5-fold higher and IgG3 subclass was 4-fold higher for ChiGluPs comparing to ChiPs. Overall, the preparation method developed allowed the advantageous combination of β-glucan with chitosan, without chemical functionalization, which represents an additional step toward tailor-made adjuvants production using simple precipitation techniques.

摘要

新疫苗佐剂的开发不仅迫切需要能够开辟新的疫苗给药途径,而且主要需要超越保护性体液免疫,因为体液免疫往往不足以对抗传染病。联合两种或更多免疫佐剂或模拟病原体理化性质是可以促进强大和更平衡的 Th1/Th2 免疫反应的策略。因此,本工作旨在将壳聚糖和 β-葡聚糖这两种生物聚合物结合在同一颗粒中,最好是使表面 β-葡聚糖定位,以模拟某些病原体的细胞壁,并刺激表达 Dectin-1 受体的免疫细胞。壳聚糖:β-葡聚糖颗粒(ChiGluPs)是通过壳聚糖沉淀法开发的。壳聚糖沉淀到 β-葡聚糖碱性溶液中,然后用京尼平交联。优化方法得到的 ChiPs 平均粒径为 837nm,ChiGluPs 平均粒径为 1274nm。通过 zeta 电位测量(ChiGluPs 为+24mV,ChiPs 为+36mV)和 zeta 电位滴定证实了 β-葡聚糖表面定位。这些新颗粒表现出高抗原负载效率和低细胞毒性。小鼠疫苗接种研究表明,ChiPs 和 ChiGluPs 对乙型肝炎表面抗原(HBsAg)均具有佐剂作用,当每剂给予 1.5μg HBsAg 时,ChiGluPs 产生的血清抗-HBsAg 总 IgG 是 ChiPs 的 16 倍。具体而言,与 ChiPs 相比,ChiGluPs 的 IgG1 亚类高 5 倍,IgG3 亚类高 4 倍。总的来说,所开发的制备方法允许在不进行化学官能化的情况下,将 β-葡聚糖与壳聚糖进行有利结合,这是使用简单沉淀技术生产定制佐剂的又一步。

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