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Published on: August 25, 2017
Pneumocystis pneumonia increases the susceptibility of mice to sublethal hyperoxia
James M Beck1, Angela M Preston, Steven E Wilcoxen
1Division of Pulmonary and Critical Care Medicine, Department of Internal Medicine, University of Michigan Medical School Medical Service, Department of Veterans Affairs Medical Center, 2215 Fuller Road, Ann Arbor, MI 48105, USA. jamebeck@umich.edu
Abstract:
Patients with Pneumocystis pneumonia often develop respiratory failure after entry into medical care, and one mechanism for this deterioration may be increased alveolar epithelial cell injury. In vitro, we previously demonstrated that Pneumocystis is not cytotoxic for alveolar epithelial cells. In vivo, however, infection with Pneumocystis could increase susceptibility to injury by stressors that, alone, would be sublethal. We examined transient exposure to hyperoxia as a prototypical stress that does cause mortality in normal mice. Mice were depleted of CD4+ T cells and inoculated intratracheally with Pneumocystis. Control mice were depleted of CD4+ T cells but did not receive Pneumocystis. After 4 weeks, mice were maintained in normoxia, were exposed to hyperoxia for 4 days, or were exposed to hyperoxia for 4 days followed by return to normoxia. CD4-depleted mice with Pneumocystis pneumonia demonstrated significant mortality after transient exposure to hyperoxia, while all uninfected control mice survived this stress. We determined that organism burdens were not different. However, infected mice exposed to hyperoxia and then returned to normoxia demonstrated significant increases in inflammatory cell accumulation and lung cell apoptosis. We conclude that Pneumocystis pneumonia leads to increased mortality following a normally sublethal hyperoxic insult, accompanied by alveolar epithelial cell injury and increased pulmonary inflammation.
Insights
Pneumocystis pneumonia infection in mice increased mortality when exposed to mild hyperoxia. This suggests Pneumocystis pneumonia compromises lung defenses against common respiratory stressors.
Area of Science:
- Pulmonary Medicine
- Immunology
- Infectious Diseases
Background:
- Pneumocystis pneumonia (PCP) can lead to respiratory failure in patients.
- Previous in vitro studies showed Pneumocystis is not directly cytotoxic to alveolar epithelial cells.
- In vivo, Pneumocystis infection may increase susceptibility to other lung stressors.
Purpose of the Study:
- To investigate if Pneumocystis infection enhances susceptibility to hyperoxia-induced lung injury.
- To examine the impact of transient hyperoxia on CD4+ T cell-depleted mice with Pneumocystis pneumonia.
Main Methods:
- Mice were depleted of CD4+ T cells and infected with Pneumocystis or given a control inoculum.
- Mice were exposed to normoxia, transient hyperoxia, or hyperoxia followed by normoxia.
- Mortality, organism burden, inflammatory cell accumulation, and apoptosis were assessed.
Main Results:
- CD4-depleted mice with Pneumocystis pneumonia exhibited significant mortality after hyperoxia exposure, unlike controls.
- Organism burdens were similar between infected and control groups.
- Infected mice exposed to hyperoxia showed increased inflammatory cell accumulation and apoptosis.
Conclusions:
- Pneumocystis pneumonia increases mortality following a normally sublethal hyperoxic stress.
- The infection leads to alveolar epithelial cell injury and heightened pulmonary inflammation.
- CD4+ T cell depletion is a relevant model for studying PCP-induced lung injury susceptibility.

