Mycobacterium tuberculosis -Induced Upregulation of the COX-2/mPGES-1 Pathway in Human Macrophages Is Abrogated by Sulfasalazine

GND
1270520040
Zugehörigkeit
Department of Pharmaceutical/Medicinal Chemistry, Institute of Pharmacy, Friedrich-Schiller-University ,Jena ,Germany
Wang, Wenfei;
Zugehörigkeit
Department of Pharmaceutical/Medicinal Chemistry, Institute of Pharmacy, Friedrich-Schiller-University ,Jena ,Germany
Ning, Yuping;
GND
1182583512
Zugehörigkeit
Guangdong Provincial Key Laboratory of Regional Immunity and Diseases, Department of Pathogen Biology, Shenzhen University School of Medicine ,Shenzhen ,China
Wang, Yejun;
Zugehörigkeit
Guangdong Key Laboratory for Emerging Infectious Diseases, Shenzhen Third People’s Hospital ,Shenzhen ,China
Deng, Guofang;
GND
1217346635
Zugehörigkeit
Department of Pharmaceutical/Medicinal Chemistry, Institute of Pharmacy, Friedrich-Schiller-University ,Jena ,Germany
Pace, Simona;
GND
1058173545
Zugehörigkeit
Friedrich-Loeffler-Institut/Federal Research Institute for Animal Health, Institute of Molecular Pathogenesis ,Jena ,Germany
Barth, Stefanie A.;
GND
114899657
Zugehörigkeit
Friedrich-Loeffler-Institut/Federal Research Institute for Animal Health, Institute of Molecular Pathogenesis ,Jena ,Germany
Menge, Christian;
GND
127051914X
Zugehörigkeit
Department of Pharmaceutical/Medicinal Chemistry, Institute of Pharmacy, Friedrich-Schiller-University ,Jena ,Germany
Zhang, Kehong;
Zugehörigkeit
Guangdong Provincial Key Laboratory of Regional Immunity and Diseases, Department of Pathogen Biology, Shenzhen University School of Medicine ,Shenzhen ,China
Dai, Youchao;
Zugehörigkeit
Guangdong Provincial Key Laboratory of Regional Immunity and Diseases, Department of Pathogen Biology, Shenzhen University School of Medicine ,Shenzhen ,China
Cai, Yi;
Zugehörigkeit
Guangdong Provincial Key Laboratory of Regional Immunity and Diseases, Department of Pathogen Biology, Shenzhen University School of Medicine ,Shenzhen ,China
Chen, Xinchun;
GND
1022335375
Zugehörigkeit
Department of Pharmaceutical/Medicinal Chemistry, Institute of Pharmacy, Friedrich-Schiller-University ,Jena ,Germany
Werz, Oliver

Macrophages are the primary human host cells of intracellular Mycobacterium tuberculosis ( M.tb ) infection, where the magnitude of inflammatory reactions is crucial for determining the outcome of infection. Previously, we showed that the anti-inflammatory drug sulfasalazine (SASP) significantly reduced the M.tb bactericidal burden and histopathological inflammation in mice. Here, we asked which genes in human inflammatory macrophages are affected upon infection with M.tb and how would potential changes impact the functional state of macrophages. We used a flow cytometry sorting system which can distinguish the dead and alive states of M.tb harbored in human monocyte-derived macrophages (MDM). We found that the expression of cyclooxygenase-2 and microsomal prostaglandin E 2 synthase (mPGES)-1 increased significantly in tagRFP + MDM which were infected with alive M.tb . After exposure of polarized M1-MDM to M.tb (H37Rv strain)-conditioned medium (MTB-CM) or to the M.tb -derived 19-kD antigen, the production of PGE 2 and pro-inflammatory cytokines increased 3- to 4-fold. Upon treatment of M1-MDM with SASP, the MTB-CM-induced expression of COX-2 and the release of COX products and cytokines decreased. Elevation of PGE 2 in M1-MDM upon MTB-CM stimulation and modulation by SASP correlated with the activation of the NF-κB pathway. Together, infection of human macrophages by M.tb strongly induces COX-2 and mPGES-1 expression along with massive PGE 2 formation which is abrogated by the anti-inflammatory drug SASP.

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Rechteinhaber: Copyright © 2022 Wang, Ning, Wang, Deng, Pace, Barth, Menge, Zhang, Dai, Cai, Chen and Werz

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