阿奇霉素
百日咳博德特菌
免疫学
先天免疫系统
免疫系统
抗生素
免疫
医学
百日咳疫苗
获得性免疫系统
T细胞
免疫
生物
微生物学
细菌
遗传学
作者
Lisa Borkner,Alicja Misiak,Mieszko M. Wilk,Kingston H. G. Mills
标识
DOI:10.3389/fimmu.2018.01764
摘要
Treatment with the macrolide antibiotic azithromycin is an important intervention for controlling infection of children with Bordetella pertussis and as a prophylaxis for preventing transmission to family members. However, antibiotics are known to have immunomodulatory effects independent of their anti-microbial activity. Here we used a mouse model to examine the effects of azithromycin treatment on clearance of B. pertussis and induction of innate and adaptive immunity. We found that treatment of mice with azithromycin either 7 or 14 days post challenge effectively cleared the bacteria from the lungs. The numbers of innate immune cells in the lungs were significantly reduced in antibiotic-treated mice. Furthermore, azithromycin reduced the activation status of macrophages and dendritic cells, but only in mice treated on d7. Early treatment with antibiotics also reduced the frequency of tissue-resident T cells and IL-17-producing cells in the lungs. To assess the immunomodulatory effects of azithromycin independent of its anti-microbial activity, mice were antibiotic treated during immunization with a whole cell pertussis (wP) vaccine. Protection against B. pertussis induced by immunization with wP was slightly reduced in azithromycin-treated mice. Antibiotic-treated wP-immunized mice had reduced numbers of lung-resident memory CD4 T cells and IL-17-production and reduced CD49d expression on splenic CD4 T cells after challenge, suggestive of impaired CD4 T cell memory. Taken together these results suggest that azithromycin can modulate the induction of memory CD4 T cells during B. pertussis infection, but this may in part be due to the clearance of B. pertussis and resulting loss of components that stimulate innate and adaptive immune response.
科研通智能强力驱动
Strongly Powered by AbleSci AI