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PMID: 17023664 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Sequential growth of fetal sheep cardiac myocytes in response to simultaneous arterial and venous hypertension.

Jonker SS, Faber JJ, Anderson DF, Thornburg KL, Louey S, Giraud GD

Abstract

While the fetal heart grows by myocyte enlargement and proliferation, myocytes lose their capacity for proliferation in the perinatal period after terminal differentiation. The relationship between myocyte enlargement, proliferation, and terminal differentiation has not been studied under conditions of combined arterial and venous hypertension, as occurs in some clinical conditions. We hypothesize that fetal arterial and venous hypertension initially leads to cardiomyocyte proliferation, followed by myocyte enlargement. Two groups of fetal sheep received intravascular plasma infusions for 4 or 8 days (from 130 days gestation) to increase vascular pressures. Fetal hearts were arrested in diastole and dissociated. Myocyte size, terminal differentiation (%binucleation), and cell cycle activity (Ki-67[+] cells as a % of mononucleated myocytes) were measured. We found that chronic plasma infusion greatly increased venous and arterial pressures. Heart (but not body) weights were approximately 30% greater in hypertensive fetuses than controls. The incidence of cell cycle activity doubled in hypertensive fetuses compared with controls. After 4 days of hypertension, myocytes were (approximately 11%) longer, but only after 8 days were they wider (approximately 12%). After 8 days, %binucleation was approximately 50% greater in hypertensive fetuses. We observed two phases of cardiomyocyte growth and maturation in response to fetal arterial and venous hypertension. In the early phase, the incidence of cell cycle activity increased and myocytes elongated. In the later phase, the incidence of cell cycle activity remained elevated, %binucleation increased, and cross sections were greater. This study highlights unique fetal adaptations of the myocardium and the importance of experimental duration when interpreting fetal cardiac growth data.

MeSH Terms
Animals Arteries/physiopathology Blood Pressure/physiology Blood Proteins/physiology Body Weight/physiology Cell Cycle/physiology Cell Differentiation/physiology Cell Proliferation Cell Size Female Fetus/cytology Heart Rate/physiology Hypertension/physiopathology Myocytes, Cardiac/physiology Organ Size/physiology Pregnancy Renin/blood Sheep Veins/physiopathology Ventricular Function
Chemicals
Blood Proteins Renin
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Jonker Sonnet S
Heart Research Center, Oregon Health and Science University, Portland, Oregon, USA. [email protected]
Faber J Job
Anderson Debra F
Thornburg Kent L
Louey Samantha
Giraud George D
Article Info
Journal
American journal of physiology. Regulatory, integrative and comparative physiology
Abbr.
Am J Physiol Regul Integr Comp Physiol
ISSN
0363-6119
Published
2007-02-00
Epub
2006-00-05
Pages
R913-9
Language
English
Region
United States
NLM ID
100901230
Subset
IM
Grants
NICHD NIH HHS · HD-034430 · United States
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