Developmental basis of vascular smooth muscle diversity.
Explore this paper's citation graph
Summary
A closer look at the diversity of smooth muscle origins in vascular development provides new perspectives about how blood vessels differ from one another and why they respond in disparate ways to common risk factors associated with vascular disease.
- Type
- review
- Published
- 2007-06-01
- Cited by
- 749
- References
- 126
- OpenAlex
- https://openalex.org/W1971898007
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15421090
Keywords
Vascular smooth muscle, Biology, Diversity (politics), Evolutionary biology, Smooth muscle
References
- Smooth Muscle Lineage Diversity in the Chick Embryo
- Immunohistochemical Evidence for a Mesothelial Contribution to the Ventral Wall of the Avian Aorta
- The role of arterial tissue susceptibility in atherogenesis.
- Clonal architecture of normal and atherosclerotic aorta: implications for atherogenesis and vascular development.
- Identification of Barx2B, a Serum Response Factor-associated Homeodomain Protein*
- Development of Coronary Vessels
- Flk1-positive cells derived from embryonic stem cells serve as vascular progenitors
- A syndrome of tricuspid atresia in mice with a targeted mutation of the gene encoding Fog-2
- The myth of ventrally emigrating neural tube (VENT) cells and their contribution to the developing cardiovascular system
- Monoclonality of smooth muscle cells in human atherosclerosis.
- The development of pericardial villi in the chick embryo
- YAC complementation shows a requirement for Wt1 in the development of epicardium, adrenal gland and throughout nephrogenesis.
- A role for serum response factor in coronary smooth muscle differentiation from proepicardial cells.
- A serum response factor-dependent transcriptional regulatory program identifies distinct smooth muscle cell sublineages
- The serum response factor is extensively modified by phosphorylation following its synthesis in serum-stimulated fibroblasts
- Elastogenic Cells in the Developing Cardiovascular System
- Conotruncal myocardium arises from a secondary heart field.
- The meso-angioblast: a multipotent, self-renewing cell that originates from the dorsal aorta and differentiates into most mesodermal tissues.
- The smooth muscle cell in culture.
- Retroviral analysis of cardiac morphogenesis: discontinuous formation of coronary vessels.
Cited by
- Conditional inactivation of TGF-β type II receptor in smooth muscle cells and epicardium causes lethal aortic and cardiac defects
- Pathologic calcification of adult vascular smooth muscle cells differs on their crest or mesodermal embryonic origin
- Regional Variation in Aortic AT1b Receptor mRNA Abundance Is Associated with Contractility but Unrelated to Atherosclerosis and Aortic Aneurysms
- Pericytes in the eye
- [Stem and progenitor cells in biostructure of blood vessel walls].
- Fibulin-4 is essential for maintaining arterial wall integrity in conduit but not muscular arteries
- Notch Signaling in Development, Tissue Homeostasis, and Disease.
- Engineering the human blood-brain barrier in vitro
- Multiple Roles of Tenascins in Homeostasis and Pathophysiology of Aorta
- Perfusion Tissue Culture Initiates Differential Remodeling of Internal Thoracic Arteries, Radial Arteries, and Saphenous Veins
- Vascular wall resident progenitor cells: a review.
- Vascular calcifications in chronic kidney disease--clinical management.
- Mechanics and modeling of postnatal arterial development in mouse models of varying elastin
- Zerebrale Arteriogenese – Review und Update
- Remodelage de la paroi artérielle : étude des aspects de destruction et de reconstruction
- Bone alkaline phosphatase isoforms in chronic kidney disease : mineral and bone disorder
- Functional studies of two forkhead genes
- Telomere length dynamics in aging mice
- The role of the D4Z4 repeat and the KLF15 transcription factor in the facioscapulohumeral muscular dystrophy (FSHD)
- SMAD3 deficiency promotes vessel wall remodeling, collagen fiber reorganization and leukocyte infiltration in an inflammatory abdominal aortic aneurysm mouse model
Related papers
- Interaction of platelets with invertebrate and lower vertebrate collagens.
- Fish fossil unfolds clues to vertebrate brain evolution
- Advances in vertebrate origin and evolvement (PlatesVIII,IX)
- Non-vertebrate animals have only one gene of the p53 family which is most similar to vertebrate p63
- The best understood vertebrate behavior.
- A possible Late Cambrian vertebrate from Australia
- Early Evolution of the Vertebrate Eye—Fossil Evidence
- Female Blow Flies As Vertebrate Resource Indicators
- Toward a comprehensive three-dimensional model of the contractile system of vertebrate smooth muscle cells.