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Published on: March 21, 2021
Human lung mast cells mediate pneumococcal cell death in response to activation by pneumolysin
Glenn Cruse1, Vitor E Fernandes, Jose de Salort
1Department of Infection, Immunity and Inflammation, Institute for Lung Health, University of Leicester Medical School, Leicester, United Kingdom. glenncruse@hotmail.com
Abstract:
Mast cells are emerging as contributors to innate immunity. Mouse mast cells have a pivotal role in protection against bacterial infection, and human cord blood-derived mast cells reduce bacterial viability in culture. The objectives of this study were to determine whether human lung mast cells (HLMCs) might be protective against pneumococcal lung infection through direct antimicrobial activity. Tissue-derived HLMCs and the human mast cell lines HMC-1 and LAD2 were cocultured with wild-type and mutant pneumococci, and viability and functional assays were performed. Mast cells were also stimulated with purified pneumolysin. HLMCs killed wild-type serotype-2 (D39) pneumococci in coculture but had no effect on an isogenic pneumolysin-deficient (PLN-A) pneumococcus. D39 wild-type, but not PLN-A pneumococci, induced the release of leukotriene C4 from human mast cells in a dose-dependent manner, which was not accompanied by histamine release. Stimulation of mast cells with sublytic concentrations of purified pneumolysin replicated this effect. Furthermore, pneumolysin induced the release of the cathelicidin LL-37 from HLMCs, purified LL-37 reduced pneumococcal viability, and neutralizing Ab to LL-37 attenuated mast cell-dependent pneumococcal killing. In addition, at high concentrations, all pneumococcal strains tested reduced HLMC viability through a combination of pneumolysin and H2O2-dependent mechanisms. HLMCs exhibit direct antimicrobial activity to pneumococci through their activation by pneumolysin. This antimicrobial activity is mediated, in part, by the release of LL-37 from HLMCs. This suggests that mast cells provide an early warning system and potentially limit pneumococcal dissemination early in the course of invasive pulmonary pneumococcal disease.
Insights
Human lung mast cells (HLMCs) kill pneumococci via pneumolysin activation, releasing antimicrobial cathelicidin LL-37. This innate immune response may limit bacterial spread in lung infections.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Mast cells are key players in innate immunity, with known roles in bacterial defense.
- Human mast cells, particularly HLMCs, are investigated for their direct antimicrobial capabilities.
Purpose of the Study:
- To determine if human lung mast cells (HLMCs) possess direct antimicrobial activity against pneumococcal lung infections.
- To elucidate the mechanisms underlying mast cell-mediated pneumococcal killing.
Main Methods:
- Co-culture of tissue-derived HLMCs and mast cell lines with wild-type and mutant *Streptococcus pneumoniae*.
- Assays for bacterial viability, mast cell function (leukotriene C4, histamine release), and cathelicidin LL-37 production.
- Stimulation with purified pneumolysin and use of neutralizing antibodies.
Main Results:
- HLMCs effectively killed wild-type pneumococci but not pneumolysin-deficient strains.
- Pneumolysin activated HLMCs, inducing dose-dependent leukotriene C4 release.
- Pneumolysin triggered LL-37 release from HLMCs, which directly reduced pneumococcal viability.
- Pneumococci also reduced HLMC viability via pneumolysin and H2O2.
Conclusions:
- HLMCs exhibit direct antimicrobial activity against *Streptococcus pneumoniae*.
- This activity is primarily mediated by pneumolysin-induced release of cathelicidin LL-37.
- Mast cells may act as an early defense mechanism against pneumococcal dissemination in the lungs.
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