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The interaction between different types of activated RAW 264.7 cells and macrophage inflammatory protein-1 alpha
Zhongshi He1, Hui Zhang, Chunxu Yang
1Department of Radiation and Medical Oncology, Zhongnan Hospital, Wuhan University, 169, Donghu Road, Wuchang District, Wuhan, Hubei 430071, PR China.
Background:
Two major ways of macrophage (MΦ) activation can occur in radiation-induced pulmonary injury (RPI): classical and alternative MΦ activation, which play important roles in the pathogenesis of RPI. MΦ can produce chemokine MΦ inflammatory protein-1α (MIP-1α), while MIP-1α can recruit MΦ. The difference in the chemotactic ability of MIP-1α toward distinct activated MΦ is unclear. We speculated that there has been important interaction of MIP-1α with different activated MΦ, which might contribute to the pathogenesis of RPI.
Methods:
Classically and alternatively activated MΦ were produced by stimulating murine MΦ cell line RAW 264.7 cells with three different stimuli (LPS, IL-4 and IL-13); Then we used recombinant MIP-1α to attract two types of activated MΦ. In addition, we measured the ability of two types of activated MΦ to produce MIP-1α at the protein or mRNA level.
Results:
Chemotactic ability of recombinant MIP-1α toward IL-13-treated MΦ was the strongest, was moderate for IL-4-treated MΦ, and was weakest for LPS-stimulated MΦ (p<0.01). The ability of LPS-stimulated MΦ to secrete MIP-1α was significantly stronger than that of IL-4-treated or IL-13-treated MΦ (p<0.01). The ability of LPS-stimulated MΦ to express MIP-1α mRNA also was stronger than that of IL-4- or IL-13-stimulated MΦ (p<0.01).
Conclusions:
The chemotactic ability of MIP-1α toward alternatively activated MΦ (M2) was significantly greater than that for classically activated MΦ (M1). Meanwhile, both at the mRNA and protein level, the capacity of M1 to produce MIP-1α is better than that of M2. Thus, chemokine MIP-1α may play an important role in modulating the transition from radiation pneumonitis to pulmonary fibrosis in vivo, through the different chemotactic affinity for M1 and M2.
Insights
Chemokine MIP-1α has greater attraction to alternatively activated macrophages (M2) than classically activated macrophages (M1). M1 macrophages produce more MIP-1α than M2, suggesting a role in radiation-induced pulmonary injury progression.
Area of Science:
- Immunology
- Cell Biology
- Pulmonary Medicine
Background:
- Macrophage activation is key in radiation-induced pulmonary injury (RPI).
- Two main types of macrophage activation exist: classical (M1) and alternative (M2).
- Chemokine MIP-1α recruits macrophages, but its differential effects on activated MΦ are not fully understood.
Purpose of the Study:
- To investigate the differential chemotactic abilities of MIP-1α towards M1 and M2 macrophages.
- To compare the production of MIP-1α by M1 and M2 macrophages.
Main Methods:
- Murine macrophage cell line RAW 264.7 cells were stimulated to differentiate into M1 (LPS) and M2 (IL-4, IL-13) phenotypes.
- Recombinant MIP-1α was used to assess chemotaxis of differentiated macrophages.
- MIP-1α production at protein and mRNA levels was measured for both M1 and M2 macrophages.
Main Results:
- MIP-1α exhibited the strongest chemotactic ability towards IL-13-treated MΦ (M2), moderate for IL-4-treated MΦ (M2), and weakest for LPS-stimulated MΦ (M1).
- LPS-stimulated MΦ (M1) showed significantly higher secretion of MIP-1α protein and mRNA compared to IL-4 or IL-13-treated MΦ (M2).
Conclusions:
- MIP-1α has a greater chemotactic affinity for alternatively activated MΦ (M2) than classically activated MΦ (M1).
- Classically activated MΦ (M1) demonstrate a superior capacity for MIP-1α production at both mRNA and protein levels.
- Differential interaction of MIP-1α with M1 and M2 macrophages may influence the progression from radiation pneumonitis to pulmonary fibrosis.
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