4.8 Article

S100A8/A9 regulates CD11b expression and neutrophil recruitment during chronic tuberculosis

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 130, Issue 6, Pages 3098-3112

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI130546

Keywords

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Funding

  1. Washington University in St. Louis
  2. NIH [S10 RR0227552, HL105427, AI123780, AI111914]
  3. Interdisciplinary Center of Clinical Research of the University of Munster [Vo2/014/09]
  4. German Research Foundation (DFG) [CRC 1009 B8]
  5. National Council of Science and Technology of Mexico (Consejo Nacional de Tecnologia de Mexico, CONACYT) [SSA/IMSS/ISSSTE/S0008-2017-1/290512]
  6. NIH/NHLBI [T32 HL007317-40]

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Neutrophil accumulation is associated with lung pathology during active tuberculosis (ATB). However, the molecular mechanism or mechanisms by which neutrophils accumulate in the lung and contribute to TB immunopathology are not fully delineated. Using the well-established mouse model of TB, our new data provide evidence that the alarmin S100A8/A9 mediates neutrophil accumulation during progression to chronic TB. Depletion of neutrophils or S100A8/49 deficiency resulted in improved Mycobacterium tuberculosis (Mtb) control during chronic but not acute TB. Mechanistically, we demonstrate that, following Mtb infection, S100A8/A9 expression is required for upregulation of the integrin molecule CD11b specifically on neutrophils, mediating their accumulation during chronic TB disease. These findings are further substantiated by increased expression of S100A8 and S100A9 mRNA in whole blood in human TB progressors when compared with nonprogressors and rapidly decreased S100A8/A9 protein levels in the serum upon TB treatment. Furthermore, we demonstrate that S100A8/A9 serum levels along with chemokines are useful in distinguishing between ATB and asymptomatic Mtb-infected latent individuals. Thus, our results support targeting S100A8/A9 pathways as host-directed therapy for TB.

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