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Published on: February 21, 2018
P-Selectin Sustains Extramedullary Hematopoiesis in the Gata1 low Model of Myelofibrosis
Gerald J Spangrude1, Daniel Lewandowski2, Fabrizio Martelli3
1Department of Medicine, Division of Hematology and Hematologic Malignancies, University of Utah, Salt Lake City, Utah, USA.
Abstract:
Splenomegaly is a major manifestation of primary myelofibrosis (PMF) contributing to clinical symptoms and hematologic abnormalities. The spleen from PMF patients contains increased numbers of hematopoietic stem cells (HSC) and megakaryocytes (MK). These MK express high levels of P-selectin (P-sel) that, by triggering neutrophil emperipolesis, may cause TGF-β release and disease progression. This hypothesis was tested by deleting the P-sel gene in the myelofibrosis mouse model carrying the hypomorphic Gata1(low) mutation that induces megakaryocyte abnormalities that recapitulate those observed in PMF. P-sel(null) Gata1(low) mice survived splenectomy and lived 3 months longer than P-sel(WT) Gata1(low) littermates and expressed limited fibrosis and osteosclerosis in the marrow or splenomegaly. Furthermore, deletion of P-sel disrupted megakaryocyte/neutrophil interactions in spleen, reduced TGF-β content, and corrected the HSC distribution that in Gata1(low) mice, as in PMF patients, is abnormally expanded in spleen. Conversely, pharmacological inhibition of TGF-β reduced P-sel expression in MK and corrected HSC distribution. Spleens, but not marrow, of Gata1(low) mice contained numerous cKIT(pos) activated fibrocytes, probably of dendritic cell origin, whose membrane protrusions interacted with MK establishing niches hosting immature cKIT(pos) hematopoietic cells. These activated fibrocytes were not detected in spleens from P-sel(null) Gata1(low) or TGF-β-inhibited Gata1(low) littermates and were observed in spleen, but not in marrow, from PMF patients. Therefore, in Gata1(low) mice, and possibly in PMF, abnormal P-sel expression in MK may mediate the pathological cell interactions that increase TGF-β content in MK and favor establishment of a microenvironment that supports myelofibrosis-related HSC in spleen.
Insights
P-selectin (P-sel) on megakaryocytes drives primary myelofibrosis (PMF) progression by promoting TGF-β release and abnormal stem cell expansion. Blocking P-sel or TGF-β ameliorates PMF-like conditions in mice.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Splenomegaly is a key feature of primary myelofibrosis (PMF), linked to increased hematopoietic stem cells (HSC) and megakaryocytes (MK) in the spleen.
- Megakaryocyte-expressed P-selectin (P-sel) may drive PMF by triggering neutrophil emperipolesis, leading to TGF-β release and disease advancement.
Purpose of the Study:
- To investigate the role of P-selectin in PMF pathogenesis using a mouse model.
- To determine if targeting P-selectin or TGF-β can mitigate PMF-associated pathology.
Main Methods:
- Deletion of the P-selectin gene in Gata1(low) mice, a model for PMF with megakaryocyte abnormalities.
- Assessment of survival, splenomegaly, bone marrow fibrosis, osteosclerosis, cell interactions, and TGF-β levels.
- Pharmacological inhibition of TGF-β to evaluate its impact on P-selectin expression and HSC distribution.
Main Results:
- P-selectin null Gata1(low) mice showed improved survival, reduced splenomegaly, and less fibrosis/osteosclerosis compared to controls.
- P-selectin deletion disrupted megakaryocyte-neutrophil interactions, decreased TGF-β, and normalized HSC distribution in the spleen.
- TGF-β inhibition reduced P-selectin expression and corrected HSC distribution, while P-selectin null mice lacked pathological fibrocytes.
Conclusions:
- Abnormal P-selectin expression on megakaryocytes contributes to PMF by mediating pathological cell interactions and fostering a pro-fibrotic microenvironment.
- Targeting P-selectin or TGF-β pathways holds therapeutic potential for managing primary myelofibrosis.
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