Isatis indigotica root polysaccharides as adjuvants for an inactivated rabies virus vaccine

佐剂 免疫系统 抗原 脾细胞 生物 抗体效价 免疫原性 埃利斯波特 免疫学 微生物学 病毒学 抗体 T细胞 效价
作者
Weijiao Zhang,Xuexing Zheng,Nan Cheng,Weiwei Gai,Xianghong Xue,Yuxia Wang,Yuwei Gao,Junjie Shan,Songtao Yang,Xianzhu Xia
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:87: 7-15 被引量:23
标识
DOI:10.1016/j.ijbiomac.2016.02.023
摘要

Adjuvants can enhance vaccine immunogenicity and induce long-term enhancement of immune responses. Thus, adjuvants are important for vaccine research. Polysaccharides isolated from select Chinese herbs have been demonstrated to possess various beneficial functions and excellent adjuvant abilities. In the present study, the polysaccharides IIP-A-1 and IIP-2 were isolated from Isatis indigotica root and compared with the common vaccine adjuvant aluminum hydroxide via intramuscular co-administration of inactivated rabies virus rCVS-11-G into mice. Blood was collected to determine virus neutralizing antibody (VNA) titers and B and T lymphocyte activation status. Inguinal lymph node samples were collected and used to measure B lymphocyte proliferation. Splenocytes were isolated, from which antigen-specific cellular immune responses were detected via ELISpot, ELISA and intracellular cytokine staining. The results revealed that both types of polysaccharides induce more rapid changes and higher VNA titers than aluminum hydroxide. Flow cytometry assays revealed that the polysaccharides activated more B lymphocytes in the lymph nodes and more B and T lymphocytes in the blood than aluminum hydroxide. Antigen-specific cellular immune responses showed that IIP-2 strongly induced T lymphocyte proliferation in the spleen and high levels of cytokine secretion from splenocytes, whereas aluminum hydroxide induced proliferation in only a small number of lymphocytes and the secretion of only small quantities of cytokines. Collectively, these data suggest that the polysaccharide IIP-2 exhibits excellent adjuvant activity and can enhance both cellular and humoral immunity.
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