Literature DB >> 8850564

Cardiac neural crest is essential for the persistence rather than the formation of an arch artery.

K L Waldo1, D Kumiski, M L Kirby.   

Abstract

Double-label immunohistochemistry was used to compare early aortic arch artery development in cardiac neural crest-ablated and sham-operated quail embryos ranging from stage 13 to stage 18. The monoclonal antibody QH-1 labeled endothelial cells and their precursors, and HNK-1 labeled migrating neural crest cells. In the sham-operated embryos, the third aortic arch artery developed from a lumenizing strand of endothelial precursors that became separated from the pharyngeal endoderm by migrating cardiac neural crest cells as they ensheathed the artery. The arch artery of the neural crest-ablated embryos lumenized but failed to become separated from the pharyngeal endoderm, indicating that neural crest is unnecessary for the early formation of the aortic arch artery. However, once blood flow was initiated through the third arch artery of crest-ablated embryos at stage 16, the artery became misshapen and sinusoidal. By embryonic day 3, abnormal connections to the dorsal aorta occurred and bilateral symmetry was lost, suggesting that the loss of neural crest-derived ectomesenchyme destabilizes the nascent artery. Although here we show no loss of the third arch artery, past studies have reported hypoplasia or missing carotids in older neural crest-ablated embryos (Bockman et al. [1987] Am. J. Anat. 180:332-341; Bockman et al. [1989] Anat. Rec. 225:209-217; Nishibatake et al. [1987] Circulation 75:255-264; Tomita et al. [1991] Circulation 84:1289-1295). We suggest that the cardiac neural crest is essential for the persistence of an arch artery, but not its formation. Furthermore, since changes in the development of the arch artery are seen prior to the formation of the tunica media, it is suggested that a critical period is reached in the development of the arch artery, after lumenization, but prior to the formation of the tunica media, which necessitates the presence of the cardiac neural crest.

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Year:  1996        PMID: 8850564     DOI: 10.1002/(SICI)1097-0177(199603)205:3<281::AID-AJA8>3.0.CO;2-E

Source DB:  PubMed          Journal:  Dev Dyn        ISSN: 1058-8388            Impact factor:   3.780


  40 in total

1.  FGF-8 in the ventral pharynx alters development of myocardial calcium transients after neural crest ablation.

Authors:  M J Farrell; J L Burch; K Wallis; L Rowley; D Kumiski; H Stadt; R E Godt; T L Creazzo; M L Kirby
Journal:  J Clin Invest       Date:  2001-06       Impact factor: 14.808

2.  A novel role for cardiac neural crest in heart development.

Authors:  K Waldo; M Zdanowicz; J Burch; D H Kumiski; H A Stadt; R E Godt; T L Creazzo; M L Kirby
Journal:  J Clin Invest       Date:  1999-06       Impact factor: 14.808

3.  BMP signaling modulates hedgehog-induced secondary heart field proliferation.

Authors:  Laura A Dyer; Frini A Makadia; Alexandria Scott; Kelly Pegram; Mary R Hutson; Margaret L Kirby
Journal:  Dev Biol       Date:  2010-10-14       Impact factor: 3.582

4.  Arterial pole progenitors interpret opposing FGF/BMP signals to proliferate or differentiate.

Authors:  Mary Redmond Hutson; Xiaopei Lily Zeng; Andrew J Kim; Emily Antoon; Stephen Harward; Margaret L Kirby
Journal:  Development       Date:  2010-08-11       Impact factor: 6.868

5.  Impaired carotid artery elastic function in patients with tetralogy of Fallot.

Authors:  Andrea László; Alexandra Pintér; Tamás Horváth; Krisztina Kádár; András Temesvári; Márk Kollai; Péter Studinger
Journal:  Heart Vessels       Date:  2010-12-23       Impact factor: 2.037

Review 6.  How insights from cardiovascular developmental biology have impacted the care of infants and children with congenital heart disease.

Authors:  Alvin J Chin; Jean-Pierre Saint-Jeannet; Cecilia W Lo
Journal:  Mech Dev       Date:  2012-05-26       Impact factor: 1.882

7.  Notch pathway regulation of neural crest cell development in vivo.

Authors:  Timothy J Mead; Katherine E Yutzey
Journal:  Dev Dyn       Date:  2012-01-03       Impact factor: 3.780

Review 8.  Model systems for the study of heart development and disease. Cardiac neural crest and conotruncal malformations.

Authors:  Mary R Hutson; Margaret L Kirby
Journal:  Semin Cell Dev Biol       Date:  2006-12-19       Impact factor: 7.727

9.  Early regulative ability of the neuroepithelium to form cardiac neural crest.

Authors:  Akouavi M Ezin; John W Sechrist; Angela Zah; Marianne Bronner; Scott E Fraser
Journal:  Dev Biol       Date:  2010-11-01       Impact factor: 3.582

10.  BMP receptor IA is required in mammalian neural crest cells for development of the cardiac outflow tract and ventricular myocardium.

Authors:  Rolf W Stottmann; Murim Choi; Yuji Mishina; Erik N Meyers; John Klingensmith
Journal:  Development       Date:  2004-04-08       Impact factor: 6.868

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