NLRP6 Induces Lung Injury and Inflammation Early in Brucella and Influenza Coinfection

Author:

Shi Bochang,Han Hui,Li Huabin,Tan Lingyun,Li Xinyu,Wang Keyu,Li Bo,He Wei,Tian Chongyu,Yan Fang,Shi Yanchun,Zheng Yuanqiang,Zhao Zhongpeng

Abstract

(1) Background: With the resurgence of brucellosis epidemics in China in recent years, the chances of a brucella coinfection with other common respiratory pathogens, such as the influenza virus, have increased dramatically. However, little is known about the pathogenicity or the mechanisms of brucella and influenza coinfections. (2) Methods: To clarify the interventions in the early stages of lung damage due to brucella and influenza coinfections, we evaluated the effect of the coinfection on disease progression and mortality using a coinfection model in WT mice and NLRP6−/− mice, and we verified the function of NLRP6 in infection and proinflammation. (3) Results: The coinfection induced significant respiratory symptoms, weight loss, and a high mortality rate in WT mice. Influenza in the coinfection group significantly increased brucella proliferation in a synergistic manner. Meanwhile, a histological examination showed severe lung tissue destruction and excessive inflammatory responses in coinfected WT animals, and the expression of NLRP6 and IL-18 was dramatically increased in the lung tissues. Furthermore, NLRP6 deletion attenuated lung injuries and inflammation, a reduced bacterial load, and decreased IL-18 protein expression. (4) Conclusions: Our findings indicated that NLRP6 plays a critical role and might be a promising potential therapeutic target for brucella–influenza coinfections.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Inner Mongolia

Publisher

MDPI AG

Subject

Medicine (miscellaneous)

Reference50 articles.

1. The liver may act as a firewall mediating mutualism between the host and its gut commensal microbiota;Balmer;Sci. Transl. Med.,2014

2. IFN-γ-dependent nitric oxide suppresses Brucella-induced arthritis by inhibition of inflammasome activation;Lacey;J. Leukoc. Biol.,2019

3. Bichat guidelines for the clinical management of brucellosis and bioterrorism-related brucellosis;Bossi;Eurosurveillance,2004

4. The new global map of human brucellosis;Pappas;Lancet. Infect. Dis.,2006

5. Evaluation of the recombinant 10-kilodalton immunodominant region of the BP26 protein of Brucella abortus for specific diagnosis of bovine brucellosis;Tiwari;Clin. Vaccine Immunol.,2011

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