Very little is known about the interactions of nerve terminals in the developing heart. This application proposes a continuing study of these interactions by removal of the autonomic and sensory neural precursors in various combinations. The lesions will be accomplished in early chick embryos by selective cauterization of the neural crest producing presumptive parasympathetic, or sympathetic postganglionic neurons or the nodose placodes from which the sensory cardiac innervation arises. Two major questions have been asked: what interactions occur among terminals of the remaining innervation, and what interactions occur between these terminals and the developing myocardium.
The aims of this application are to compare the configuration of normal innervation with that in the absence of any of the three sets of cardiac nerves and then to evaluate the effect of this abnormal neural environment on development of myocardial electrical activity, myocardial intermediary metabolism and myocardial myosin development. The remaining innervation will be evaluated both quantitatively using a variety of histological and histochemical methods. Electrical activity of the myocardium will be evaluated by electrocardiography; myocardial energy metabolism will be studied using quantitative histochemical methods; and myosin development will be assessed quantitatively and qualitatively by determining myosin ATPase activity and by analysis of intact myosin by native gel electrophoresis. It is hoped that this continuing study of the dynamic relationship between the heart and the nerves which control it will lead to effective recognition and treatment of cardiac dysfunctions such as long QT syndrome and hypertrophic cardiomyopathy.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project (R01)
Project #
2R01HD017063-06
Application #
3314148
Study Section
Human Embryology and Development Subcommittee 2 (HED)
Project Start
1982-04-01
Project End
1990-03-31
Budget Start
1987-04-01
Budget End
1988-03-31
Support Year
6
Fiscal Year
1987
Total Cost
Indirect Cost
Name
Medical College of Georgia (MCG)
Department
Type
Schools of Medicine
DUNS #
City
Augusta
State
GA
Country
United States
Zip Code
30912
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Li, Yin-Xiong; Zdanowicz, Marzena; Young, Lori et al. (2003) Cardiac neural crest in zebrafish embryos contributes to myocardial cell lineage and early heart function. Dev Dyn 226:540-50
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Yelbuz, T Mesud; Zhang, Xiaowei; Choma, Michael A et al. (2003) Images in cardiovascular medicine. Approaching cardiac development in three dimensions by magnetic resonance microscopy. Circulation 108:e154-5
Li, Yin-Xiong; Kirby, Margaret L (2003) Coordinated and conserved expression of alphoid repeat and alphoid repeat-tagged coding sequences. Dev Dyn 228:72-81
Farrell, M J; Burch, J L; Wallis, K et al. (2001) FGF-8 in the ventral pharynx alters development of myocardial calcium transients after neural crest ablation. J Clin Invest 107:1509-17
Waldo, K L; Kumiski, D H; Wallis, K T et al. (2001) Conotruncal myocardium arises from a secondary heart field. Development 128:3179-88
Li, Y X; Farrell, M J; Liu, R et al. (2000) Double-stranded RNA injection produces null phenotypes in zebrafish. Dev Biol 217:394-405
Waldo, K L; Lo, C W; Kirby, M L (1999) Connexin 43 expression reflects neural crest patterns during cardiovascular development. Dev Biol 208:307-23

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