Endoglin Has a Crucial Role in Blood Cell–Mediated Vascular Repair
- 21 November 2006
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 114 (21) , 2288-2297
- https://doi.org/10.1161/circulationaha.106.639161
Abstract
Background— Endoglin, an accessory receptor for transforming growth factor-β in vascular endothelial cells, is essential for angiogenesis during mouse development. Mutations in the human gene cause hereditary hemorrhagic telangiectasia type 1 (HHT1), a disease characterized by vascular malformations that increase with age. Although haploinsufficiency is the underlying cause of the disease, HHT1 individuals show great heterogeneity in age of onset, clinical manifestations, and severity. Methods and Results— In situ hybridization and immunohistochemical analysis of mouse and human hearts revealed that endoglin is upregulated in neoangiogenic vessels formed after myocardial infarction. Microvascularity within the infarct zone was strikingly lower in mice with reduced levels of endoglin (Eng+/−) compared with wild-type mice, which resulted in a greater deterioration in cardiac function as measured by magnetic resonance imaging. This did not appear to be because of defects in host inflammatory cell numbers in the infarct zone, which accumulated to a similar extent in wild-type and heterozygous mice. However, defects in vessel formation and heart function in Eng+/− mice were rescued by injection of mononuclear cells from healthy human donors but not by mononuclear cells from HHT1 patients. Conclusions— These results establish defective vascular repair as a significant component of the origin of HHT1. Because vascular damage or inflammation occurs randomly, it may also explain disease heterogeneity. More generally, the efficiency of vascular repair may vary between individuals because of intrinsic differences in their mononuclear cells.Keywords
This publication has 47 references indexed in Scilit:
- Reduced angiogenic responses in adult endoglin heterozygous miceCardiovascular Research, 2006
- Blood outgrowth endothelial cells from Hereditary Haemorrhagic Telangiectasia patients reveal abnormalities compatible with vascular lesionsCardiovascular Research, 2005
- Interaction and functional interplay between endoglin and ALK‐1, two components of the endothelial transforming growth factor‐β receptor complexJournal of Cellular Physiology, 2005
- Transforming Growth Factor β Receptor Endoglin Is Expressed in Cardiac Fibroblasts and Modulates Profibrogenic Actions of Angiotensin IICirculation Research, 2004
- Connective tissue growth factor expression and Smad signaling during mouse heart development and myocardial infarctionDevelopmental Dynamics, 2004
- New insights into TGF-β–Smad signallingPublished by Elsevier ,2004
- Smad-dependent and Smad-independent pathways in TGF-β family signallingNature, 2003
- Therapeutic stem and progenitor cell transplantation for organ vascularization and regenerationNature Medicine, 2003
- Determinants of coronary reserve in rats subjected to coronary artery ligation or aortic bandingCardiovascular Research, 1996
- A second locus for hereditary hemorrhagic telangiectasia maps to chromosome 12.Genome Research, 1995