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Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
The transcription factor PU.1 promotes alternative macrophage polarization and asthmatic airway inflammation
Feng Qian1, Jing Deng2, Yong Gyu Lee2
1School of Pharmacy, Engineering Research Center of Cell & Therapeutic Antibody, Ministry of Education, Shanghai Jiao Tong University, Shanghai, China Department of Internal Medicine, Section of Pulmonary, Allergy, Critical Care, and Sleep Medicine, The Ohio State University, Columbus, USA john.christman@osumc.edu fengqian7@outlook.com.
Abstract:
The transcription factor PU.1 is involved in regulation of macrophage differentiation and maturation. However, the role of PU.1 in alternatively activated macrophage (AAM) and asthmatic inflammation has yet been investigated. Here we report that PU.1 serves as a critical regulator of AAM polarization and promotes the pathological progress of asthmatic airway inflammation. In response to the challenge of DRA (dust mite, ragweed, and Aspergillus) allergens, conditional PU.1-deficient (PU/ER(T)(+/-)) mice displayed attenuated allergic airway inflammation, including decreased alveolar eosinophil infiltration and reduced production of IgE, which were associated with decreased mucous glands and goblet cell hyperplasia. The reduced asthmatic inflammation in PU/ER(T)(+/-) mice was restored by adoptive transfer of IL-4-induced wild-type (WT) macrophages. Moreover, after treating PU/ER(T)(+/-) mice with tamoxifen to rescue PU.1 function, the allergic asthmatic inflammation was significantly restored. In vitro studies demonstrate that treatment of PU.1-deficient macrophages with IL-4 attenuated the expression of chitinase 3-like 3 (Ym-1) and resistin-like molecule alpha 1 (Fizz-1), two specific markers of AAM polarization. In addition, PU.1 expression in macrophages was inducible in response to IL-4 challenge, which was associated with phosphorylation of signal transducer and activator of transcription 6 (STAT6). Furthermore, DRA challenge in sensitized mice almost abrogated gene expression of Ym-1 and Fizz-1 in lung tissues of PU/ER(T)(+/-) mice compared with WT mice. These data, all together, indicate that PU.1 plays a critical role in AAM polarization and asthmatic inflammation.
Insights
The transcription factor PU.1 is crucial for alternatively activated macrophage (AAM) polarization and worsens asthmatic airway inflammation. Reducing PU.1 function alleviates allergic inflammation in mice.
Area of Science:
- Immunology
- Molecular Biology
- Respiratory Medicine
Background:
- The transcription factor PU.1 regulates macrophage differentiation.
- The role of PU.1 in alternatively activated macrophages (AAM) and asthma remains unclear.
Purpose of the Study:
- To investigate the role of PU.1 in AAM polarization.
- To determine PU.1's involvement in asthmatic airway inflammation.
Main Methods:
- Conditional PU.1-deficient mice (PU/ER(T)(+/-)) were challenged with dust mite, ragweed, and Aspergillus (DRA) allergens.
- Adoptive transfer of IL-4-induced wild-type macrophages and tamoxifen-induced PU.1 rescue were performed.
- In vitro studies assessed AAM markers (Ym-1, Fizz-1) in PU.1-deficient macrophages.
Main Results:
- PU.1 deficiency attenuated allergic airway inflammation, eosinophil infiltration, and IgE production.
- Reduced mucous glands and goblet cell hyperplasia were observed in PU.1-deficient mice.
- PU.1 deficiency impaired AAM polarization markers (Ym-1, Fizz-1) in response to IL-4.
Conclusions:
- PU.1 is a critical regulator of AAM polarization.
- PU.1 promotes the pathogenesis of asthmatic airway inflammation.
- Targeting PU.1 may offer a therapeutic strategy for asthma.
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