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Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 9, 2014
Microarray studies on effects of Pneumocystis carinii infection on global gene expression in alveolar macrophages
Bi-Hua Cheng1, Yunlong Liu, Xiaoling Xuei
1Department of Obstetrics and Gynecology, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Kaohsiung, Taiwan.
Background:
Pneumocystis pneumonia is a common opportunistic disease in AIDS patients. The alveolar macrophage is an important effector cell in the clearance of Pneumocystis organisms by phagocytosis. However, both the number and phagocytic activity of alveolar macrophages are decreased in Pneumocystis infected hosts. To understand how Pneumocystis inactivates alveolar macrophages, Affymetrix GeneChip RG-U34A DNA microarrays were used to study the difference in global gene expression in alveolar macrophages from uninfected and Pneumocystis carinii-infected Sprague-Dawley rats.
Results:
Analyses of genes that were affected by Pneumocystis infection showed that many functions in the cells were affected. Antigen presentation, cell-mediated immune response, humoral immune response, and inflammatory response were most severely affected, followed by cellular movement, immune cell trafficking, immunological disease, cell-to-cell signaling and interaction, cell death, organ injury and abnormality, cell signaling, infectious disease, small molecular biochemistry, antimicrobial response, and free radical scavenging. Since rats must be immunosuppressed in order to develop Pneumocystis infection, alveolar macrophages from four rats of the same sex and age that were treated with dexamethasone for the entire eight weeks of the study period were also examined. With a filter of false-discovery rate less than 0.1 and fold change greater than 1.5, 200 genes were found to be up-regulated, and 144 genes were down-regulated by dexamethasone treatment. During Pneumocystis pneumonia, 115 genes were found to be up- and 137 were down-regulated with the same filtering criteria. The top ten genes up-regulated by Pneumocystis infection were Cxcl10, Spp1, S100A9, Rsad2, S100A8, Nos2, RT1-Bb, Lcn2, RT1-Db1, and Srgn with fold changes ranging between 12.33 and 5.34; and the top ten down-regulated ones were Lgals1, Psat1, Tbc1d23, Gsta1, Car5b, Xrcc5, Pdlim1, Alcam, Cidea, and Pkib with fold changes ranging between -4.24 and -2.25.
Conclusions:
In order to survive in the host, Pneumocystis organisms change the expression profile of alveolar macrophages. Results of this study revealed that Pneumocystis infection affects many cellular functions leading to reduced number and activity of alveolar macrophages during Pneumocystis pneumonia.
Insights
Pneumocystis pneumonia infection alters alveolar macrophage gene expression, impairing immune functions. This study reveals how Pneumocystis inactivates these crucial immune cells, impacting host defense.
Area of Science:
- Immunology
- Molecular Biology
- Microbiology
Background:
- Pneumocystis pneumonia is a common opportunistic infection in AIDS patients.
- Alveolar macrophages are key in clearing Pneumocystis via phagocytosis.
- Pneumocystis infection reduces the number and phagocytic activity of alveolar macrophages.
Purpose of the Study:
- To investigate the molecular mechanisms by which Pneumocystis inactivates alveolar macrophages.
- To analyze global gene expression differences in alveolar macrophages from infected and uninfected rats.
Main Methods:
- Utilized Affymetrix GeneChip RG-U34A DNA microarrays for gene expression profiling.
- Examined alveolar macrophages from dexamethasone-immunosuppressed Sprague-Dawley rats.
- Applied false-discovery rate < 0.1 and fold change > 1.5 filtering criteria.
Main Results:
- Pneumocystis infection significantly affected multiple cellular functions, including antigen presentation, immune responses, and cell signaling.
- Dexamethasone treatment altered expression of 344 genes (200 up, 144 down).
- Pneumocystis pneumonia altered expression of 252 genes (115 up, 137 down), with notable changes in Cxcl10, Spp1, Lgals1, and Psat1.
Conclusions:
- Pneumocystis organisms modify alveolar macrophage gene expression to ensure host survival.
- The study demonstrates that Pneumocystis infection impairs various cellular functions, leading to reduced macrophage activity and numbers.

