Abstract
Background: Pulmonary hypertension (PH) is a disease of multiple etiologies with several common pathological features, including inflammation and pulmonary vascular remodeling. Recent evidence has suggested a potential role for the recruitment of bone marrow-derived (BMD) progenitor cells to this remodeling process. We recently demonstrated that hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) is chemotactic to murine bone marrow cells in vitro and involved in pulmonary vascular remodeling in vivo. Methodology/Principal Findings: We used a mouse bone marrow transplant model in which lethally irradiated mice were rescued with bone marrow transplanted from green fluorescent protein (GFP)+ transgenic mice to determine the role of HIMF in recruiting BMD cells to the lung vasculature during PH development. Exposure to chronic hypoxia and pulmonary gene transfer of HIMF were used to induce PH. Bothmodels resulted inmarkedly increased numbers of BMDcells in and around the pulmonary vasculature; in several neomuscularized small (~20 μm) capillary-like vessels, an entirely new medial wall was made up of these cells. We found these GFP+ BMD cells to be positive for stem cell antigen-1 and c-kit, but negative for CD31 and CD34. Several of the GFP+ cells that localized to the pulmonary vasculature were a-smooth muscle actin+ and localized to the media layer of the vessels. This finding suggests that these cells are of mesenchymal origin and differentiate toward myofibroblast and vascular smooth muscle. Structural location in the media of small vessels suggests a functional role in the lung vasculature. To examine a potentialmechanism for HIMF-dependent recruitment ofmesenchymal stemcells to the pulmonary vasculature, we performed a cell migration assay using cultured human mesenchymal stem cells (HMSCs). The addition of recombinant HIMF induced migration of HMSCs in a phosphoinosotide-3-kinase-dependent manner. Conclusions/Significance: These results demonstrate HIMF-dependent recruitment of BMD mesenchymal-like cells to the remodeling pulmonary vasculature. © 2010 Angelini et al.
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CITATION STYLE
Angelini, D. J., Su, Q., Kolosova, I. A., Fan, C., Skinner, J. T., Yamaji-Kegan, K., … Johns, R. A. (2010). Hypoxia-induced mitogenic factor (HIMF/FIZZ1/RELMα) recruits bone marrow-derived cells to the murine pulmonary vasculature. PLoS ONE, 5(6). https://doi.org/10.1371/journal.pone.0011251
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