Gr1intCD11b+ Myeloid-Derived Suppressor Cells in Mycobacterium tuberculosis Infection

被引:64
作者
Obregon-Henao, Andres [1 ]
Henao-Tamayo, Marcela [1 ]
Orme, Ian M. [1 ]
Ordway, Diane J. [1 ]
机构
[1] Colorado State Univ, Mycobacteria Res Labs, Dept Microbiol Immunol & Pathol, Ft Collins, CO 80523 USA
关键词
W-BEIJING STRAINS; L-ARGININE; MOUSE MODEL; GUINEA-PIG; EXPRESSION; MECHANISMS; GRANULOMAS; GENE; RESPONSES; ARGINASE;
D O I
10.1371/journal.pone.0080669
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Tuberculosis is one of the world's leading killers, stealing 1.4 million lives and causing 8.7 million new and relapsed infections in 2011. The only vaccine against tuberculosis is BCG which demonstrates variable efficacy in adults worldwide. Human infection with Mycobacterium tuberculosis results in the influx of inflammatory cells to the lung in an attempt to wall off bacilli by forming a granuloma. Gr1(int)CD11b(+) cells are called myeloid-derived suppressor cells (MDSC) and play a major role in regulation of inflammation in many pathological conditions. Although MDSC have been described primarily in cancer their function in tuberculosis remains unknown. During M. tuberculosis infection it is crucial to understand the function of cells involved in the regulation of inflammation during granuloma formation. Understanding their relative impact on the bacilli and other cellular phenotypes is necessary for future vaccine and drug design. Methodology/Principal Findings: We compared the bacterial burden, lung pathology and Gr1(int)CD11b(+) myeloid-derived suppressor cell immune responses in M. tuberculosis infected NOS2-/-, RAG-/-, C3HeB/FeJ and C57/BL6 mice. Gr-1(+) cells could be found on the edges of necrotic lung lesions in NOS2-/-, RAG-/-, and C3HeB/FeJ, but were absent in wild-type mice. Both populations of Gr1(+)CD11b(+) cells expressed high levels of arginase-1, and IL-17, additional markers of myeloid derived suppressor cells. We then sorted the Gr1(hi) and Gr1(int) populations from M. tuberculosis infected NOS-/- mice and placed the sorted both Gr1(int) populations at different ratios with naive or M. tuberculosis infected splenocytes and evaluated their ability to induce activation and proliferation of CD4+ T cells. Our results showed that both Gr1(hi) and Gr1(int) cells were able to induce activation and proliferation of CD4+ T cells. However this response was reduced as the ratio of CD4(+) T to Gr1(+) cells increased. Our results illustrate a yet unrecognized interplay between Gr1(+) cells and CD4(+) T cells in tuberculosis.
引用
收藏
页数:13
相关论文
共 53 条
[1]   Experimental tuberculosis: the role of comparative pathology in the discovery of improved tuberculosis treatment strategies [J].
Basaraba, Randall J. .
TUBERCULOSIS, 2008, 88 :S35-S47
[2]  
Basaraba RJ, 2010, COLOR ATLAS COMP PAT
[3]   An interferon-inducible neutrophil-driven blood transcriptional signature in human tuberculosis [J].
Berry, Matthew P. R. ;
Graham, Christine M. ;
McNab, Finlay W. ;
Xu, Zhaohui ;
Bloch, Susannah A. A. ;
Oni, Tolu ;
Wilkinson, Katalin A. ;
Banchereau, Romain ;
Skinner, Jason ;
Wilkinson, Robert J. ;
Quinn, Charles ;
Blankenship, Derek ;
Dhawan, Ranju ;
Cush, John J. ;
Mejias, Asuncion ;
Ramilo, Octavio ;
Kon, Onn M. ;
Pascual, Virginia ;
Banchereau, Jacques ;
Chaussabel, Damien ;
O'Garra, Anne .
NATURE, 2010, 466 (7309) :973-U98
[4]   DISSEMINATED TUBERCULOSIS IN INTERFERON-GAMMA GENE-DISRUPTED MICE [J].
COOPER, AM ;
DALTON, DK ;
STEWART, TA ;
GRIFFIN, JP ;
RUSSELL, DG ;
ORME, IM .
JOURNAL OF EXPERIMENTAL MEDICINE, 1993, 178 (06) :2243-2247
[5]   Expression of the nitric oxide synthase 2 gene is not essential for early control of Mycobacterium tuberculosis in the murine lung [J].
Cooper, AM ;
Pearl, JE ;
Brooks, JV ;
Ehlers, S ;
Orme, IM .
INFECTION AND IMMUNITY, 2000, 68 (12) :6879-6882
[6]   HIF-1α regulates function and differentiation of myeloid-derived suppressor cells in the tumor microenvironment [J].
Corzo, Cesar A. ;
Condamine, Thomas ;
Lu, Lily ;
Cotter, Matthew J. ;
Youn, Je-In ;
Cheng, Pingyan ;
Cho, Hyun-Il ;
Celis, Esteban ;
Quiceno, David G. ;
Padhya, Tapan ;
McCaffrey, Thomas V. ;
McCaffrey, Judith C. ;
Gabrilovich, Dmitry I. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2010, 207 (11) :2439-2453
[7]   Myeloid-derived suppressor cells control microbial sepsis [J].
Derive, Marc ;
Bouazza, Youcef ;
Alauzet, Corentine ;
Gibot, Sebastien .
INTENSIVE CARE MEDICINE, 2012, 38 (06) :1040-1049
[8]   Natural infection of guinea pigs exposed to patients with highly drug-resistant tuberculosis [J].
Dharmadhikari, Ashwin S. ;
Basaraba, Randall J. ;
Van Der Walt, Martie L. ;
Weyer, Karin ;
Mphahlele, Matsie ;
Venter, Kobus ;
Jensen, Paul A. ;
First, Melvin W. ;
Parsons, Sydney ;
McMurray, David N. ;
Orme, Ian M. ;
Nardell, Edward A. .
TUBERCULOSIS, 2011, 91 (04) :329-338
[9]   Myeloid-derived suppressor cells: mechanisms of action and recent advances in their role in transplant tolerance [J].
Dilek, Nahzli ;
de Silly, Romain Vuillefroy ;
Blancho, Gilles ;
Vanhove, Bernard .
FRONTIERS IN IMMUNOLOGY, 2012, 3
[10]   Evaluation of a Mouse Model of Necrotic Granuloma Formation Using C3HeB/FeJ Mice for Testing of Drugs against Mycobacterium tuberculosis [J].
Driver, Emily R. ;
Ryan, Gavin J. ;
Hoff, Donald R. ;
Irwin, Scott M. ;
Basaraba, Randall J. ;
Kramnik, Igor ;
Lenaerts, Anne J. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2012, 56 (06) :3181-3195