Diverging biological roles among human monocyte subsets in the context of tuberculosis infection

肺结核 免疫学 免疫系统 结核分枝杆菌 生物 背景(考古学) 单核细胞 炎症 微生物学 医学 病理 古生物学
作者
Luciana Balboa,Jorge Barrios‐Payán,Érika González-Domínguez,Claire Lastrucci,Geanncarlo Lugo‐Villarino,Dulce Mata-Espinoza,Pablo Schierloh,Denise Kviatcovsky,Olivier Neyrolles,Isabelle Maridonneau‐Parini,Carmen Sánchez‐Torres,Marı́a del Carmen Sasiain,Rogelio Hernández‐Pando
出处
期刊:Clinical Science [Portland Press]
卷期号:129 (4): 319-330 被引量:39
标识
DOI:10.1042/cs20150021
摘要

Circulating monocytes (Mo) play an essential role in the host immune response to chronic infections. We previously demonstrated that CD16(pos) Mo were expanded in TB (tuberculosis) patients, correlated with disease severity and were refractory to dendritic cell differentiation. In the present study, we investigated whether human Mo subsets (CD16(neg) and CD16(pos)) differed in their ability to influence the early inflammatory response against Mycobacterium tuberculosis. We first evaluated the capacity of the Mo subsets to migrate and engage a microbicidal response in vitro. Accordingly, CD16(neg) Mo were more prone to migrate in response to different mycobacteria-derived gradients, were more resistant to M. tuberculosis intracellular growth and produced higher reactive oxygen species than their CD16(pos) counterpart. To assess further the functional dichotomy among the human Mo subsets, we carried out an in vivo analysis by adapting a hybrid mouse model (SCID/Beige, where SCID is severe combined immunodeficient) to transfer each Mo subset, track their migratory fate during M. tuberculosis infection, and determine their impact on the host immune response. In M. tuberculosis-infected mice, the adoptively transferred CD16(neg) Mo displayed a higher lung migration index, induced a stronger pulmonary infiltration of murine leucocytes expressing pro- and anti-inflammatory cytokines, and significantly decreased the bacterial burden, in comparison with CD16(pos) Mo. Collectively, our results indicate that human Mo subsets display divergent biological roles in the context of M. tuberculosis infection, a scenario in which CD16(neg) Mo may contribute to the anti-mycobacterial immune response, whereas CD16(pos) Mo might promote microbial resilience, shedding light on a key aspect of the physiopathology of TB disease.
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