scholarly article | Q13442814 |
P356 | DOI | 10.1016/S0076-6879(08)03009-7 |
P698 | PubMed publication ID | 19022061 |
P50 | author | San-Pin Wu | Q57014355 |
P2093 | author name string | Mark W Majesky | |
Xiu Rong Dong | |||
Colin T Maguire | |||
P2860 | cites work | Proper coronary vascular development and heart morphogenesis depend on interaction of GATA-4 with FOG cofactors | Q24602111 |
Additive effects of PDGF receptor beta signaling pathways in vascular smooth muscle cell development | Q24806905 | ||
The single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction: twenty-something years on | Q28296342 | ||
Impaired myocardial angiogenesis and ischemic cardiomyopathy in mice lacking the vascular endothelial growth factor isoforms VEGF164 and VEGF188 | Q28507115 | ||
Endothelium-specific ablation of PDGFB leads to pericyte loss and glomerular, cardiac and placental abnormalities | Q28508460 | ||
Fibroblast growth factor signals regulate a wave of Hedgehog activation that is essential for coronary vascular development | Q28511544 | ||
FOG-2, a cofactor for GATA transcription factors, is essential for heart morphogenesis and development of coronary vessels from epicardium | Q28587401 | ||
Endocardial and epicardial derived FGF signals regulate myocardial proliferation and differentiation in vivo | Q28590848 | ||
A series of normal stages in the development of the chick embryo | Q29037347 | ||
Molecular regulation of vascular smooth muscle cell differentiation in development and disease | Q29615194 | ||
Regulation of smooth muscle alpha-actin expression in vivo is dependent on CArG elements within the 5' and first intron promoter regions | Q30303899 | ||
Smooth Muscle–Specific Expression of the Smooth Muscle Myosin Heavy Chain Gene in Transgenic Mice Requires 5′-Flanking and First Intronic DNA Sequence | Q30472036 | ||
The origin, formation and developmental significance of the epicardium: a review. | Q34278378 | ||
Development of coronary vessels | Q35937605 | ||
Expression of the SM22alpha promoter in transgenic mice provides evidence for distinct transcriptional regulatory programs in vascular and visceral smooth muscle cells | Q36236547 | ||
Formation of the coronary vasculature during development | Q36322715 | ||
Retroviral analysis of cardiac morphogenesis: discontinuous formation of coronary vessels | Q37242170 | ||
Origin of the proximal coronary artery stems and a review of ventricular vascularization in the chick embryo | Q38113450 | ||
A serum response factor-dependent transcriptional regulatory program identifies distinct smooth muscle cell sublineages | Q40021958 | ||
Induction of proepicardial marker gene expression by the liver bud. | Q40174197 | ||
Epicardium-Derived Cells Contribute a Novel Population to the Myocardial Wall and the Atrioventricular Cushions | Q41035429 | ||
The development of pericardial villi in the chick embryo | Q41098436 | ||
The early development of the epicardium in Tupaia belangeri | Q41291049 | ||
Cell surface glycoconjugates and the extracellular matrix of the developing mouse embryo epicardium | Q42481029 | ||
Analysis of the proepicardium-epicardium transition during the malformation of the RXRalpha-/- epicardium | Q42734016 | ||
Coronary artery development in the chick: origin and deployment of smooth muscle cells, and the effects of neural crest ablation | Q43570817 | ||
Differentiation of the smooth muscle cell phenotypes during embryonic development of coronary vessels in the rat. | Q43692240 | ||
Common Epicardial Origin of Coronary Vascular Smooth Muscle, Perivascular Fibroblasts, and Intermyocardial Fibroblasts in the Avian Heart | Q46186694 | ||
Formation and remodeling of the coronary vascular bed in the embryonic avian heart. | Q46506953 | ||
The origin of the subepicardial mesenchyme in the avian embryo: an immunohistochemical and quail-chick chimera study | Q47709534 | ||
Angiopoietin 1 expression levels in the myocardium direct coronary vessel development | Q48020368 | ||
Morphological and molecular left-right asymmetries in the development of the proepicardium: a comparative analysis on mouse and chick embryos | Q48744477 | ||
Evidence for an extracellular matrix bridge guiding proepicardial cell migration to the myocardium of chick embryos | Q50493507 | ||
Interactions between trophoblast cells and the maternal and fetal circulation in the mouse placenta | Q52547834 | ||
Pericardial mesoderm generates a population of coronary smooth muscle cells migrating into the heart along with ingrowth of the epicardial organ | Q53678848 | ||
Early development of quail heart epicardium and associated vascular and glandular structures | Q54042502 | ||
Development of the origin of the coronary arteries, a matter of ingrowth or outgrowth? | Q69437067 | ||
Epicardial formation in embryonic chick heart: computer-aided reconstruction, scanning, and transmission electron microscopic studies | Q69594752 | ||
The origin of the epicardium and the embryonic myocardial circulation in the mouse | Q70993615 | ||
Fabrication of microscalpels by electrolysis of tungsten wire in a meniscus | Q72697366 | ||
Development of the cardiac coronary vascular endothelium, studied with antiendothelial antibodies, in chicken-quail chimeras | Q72873677 | ||
The development of the coronary vessels and their differentiation into arteries and veins in the embryonic quail heart | Q73123952 | ||
Development of proximal coronary arteries in quail embryonic heart: multiple capillaries penetrating the aortic sinus fuse to form main coronary trunk | Q75191467 | ||
Coronary smooth muscle differentiation from proepicardial cells requires rhoA-mediated actin reorganization and p160 rho-kinase activity | Q77469542 | ||
Vascular endothelial growth factor expression coincides with coronary vasculogenesis and angiogenesis | Q77788394 | ||
Differential growth and multicellular villi direct proepicardial translocation to the developing mouse heart | Q80145787 | ||
Coronary artery and orifice development is associated with proper timing of epicardial outgrowth and correlated Fas-ligand-associated apoptosis patterns | Q81391311 | ||
VEGF family members regulate myocardial tubulogenesis and coronary artery formation in the embryo | Q82781221 | ||
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 209-228 | |
P577 | publication date | 2008-01-01 | |
P1433 | published in | Methods in Enzymology | Q2076903 |
P1476 | title | Chapter 9. Development of coronary vessels | |
P478 | volume | 445 |
Q53785255 | Epicardial Outgrowth Culture Assay and Ex Vivo Assessment of Epicardial-derived Cell Migration |
Q52630710 | Loss of Semaphorin-Neuropilin-1 Signaling Causes Dysmorphic Vascularization Reminiscent of Alveolar Capillary Dysplasia |
Q41903030 | Tbx18 regulates development of the epicardium and coronary vessels. |
Q38215321 | The functional diversity of essential genes required for mammalian cardiac development. |
Q34232889 | Wnt1/βcatenin injury response activates the epicardium and cardiac fibroblasts to promote cardiac repair. |
Search more.