佐剂
生物信息学
免疫系统
FOXP3型
趋化因子
抗原
CCL17型
CCL18型
免疫学
生物
抗原提呈细胞
趋化因子受体
T细胞
生物化学
基因
作者
Matthew N Davies,Hélène Péré,Iris Bosschem,Freddy Haesebrouck,Bram Flahou,Éric Tartour,Darren R. Flower,David F. Tough,Jagadeesh Bayry
标识
DOI:10.1007/978-1-4939-6445-1_8
摘要
Adjuvants are substances that boost the protective immune response to vaccine antigens. The majority of known adjuvants have been identified through the use of empirical approaches. Our aim was to identify novel adjuvants with well-defined cellular and molecular mechanisms by combining a knowledge of immunoregulatory mechanisms with an in silico approach. CD4+CD25+FoxP3+ regulatory T cells (Tregs) inhibit the protective immune responses to vaccines by suppressing the activation of antigen presenting cells such as dendritic cells (DCs). In this chapter, we describe the identification and functional validation of small molecule antagonists to CCR4, a chemokine receptor expressed on Tregs. The CCR4 binds the chemokines CCL22 and CCL17 that are produced in large amounts by activated innate cells including DCs. In silico identified small molecule CCR4 antagonists inhibited the migration of Tregs both in vitro and in vivo and when combined with vaccine antigens, significantly enhanced protective immune responses in experimental models.
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