Freshly isolated hearts of fetal mice of gestational ages ranging between 12 and 22 days (term) were exposed to several concentrations of a variety of chronotropic agents. Acetylcholine (10−4-10−2 M) caused marked bradycardia in all hearts, even after only 12-14 days' gestation (i.e., even before cardiac innervation had occurred), and the intensity of the response increased steadily with advancing age throughout gestation. Responsiveness to norepinephrine was present but minimal at 12-14 days, so that mean atrial rate rose by < 10% with a maximal concentration of the drug (10−5 M); responsiveness became more marked by 15-16 days (just after the time atrial innervation is thought to begin) and still greater effects appeared just before term. Glucagon had no effect in hearts of < 17 days' gestational age, but caused tachycardia thereafter, indicating that cardiac responsiveness to glucagon differentiates later than does responsiveness to norepinephrine. Responses to theophyl-line in 12-14 day hearts exceeded those to norepinephrine, indicating that the drug can affect heart rate independently of its ability to cause release of endogenous catecholamines. In contrast, tyramine caused no response until 21-22 days, well after the time the beta-receptor has differentiated and after innervation is fairly well developed, suggesting that the drug's primary sympathomimetic effect is indirect rather than direct. Dibutyryl cyclic AMP did not cause tachycardia at any fetal age.
Kern Wildenthal, Jacquline R. Wakeland
Title and authors | Publication | Year |
---|---|---|
Physiological and genomic consequences of adrenergic deficiency during embryonic/fetal development in mice: impact on retinoic acid metabolism
K Osuala, CN Baker, HL Nguyen, C Martinez, D Weinshenker, SN Ebert |
Physiological genomics | 2012 |
Physiological and genomic consequences of adrenergic deficiency during embryonic/fetal development in mice: impact on retinoic acid metabolism
K Osuala, CN Baker, HL Nguyen, C Martinez, D Weinshenker, SN Ebert |
Physiological genomics | 2012 |
Age-related regulation of excitation–contraction coupling in rat heart
HB Kandilci, E Tuncay, EN Zeydanli, NN Sozmen, B Turan |
Journal of Physiology and Biochemistry | 2011 |
The relevance of information generated byin vitroexperimental models to clinical doxorubicin cardiotoxicity
SE Lipshultz, H Cohen, SD Colan, EH Herman |
Leukemia & Lymphoma | 2006 |
Intrinsic Cardiac Catecholamines Help Maintain Beating Activity in Neonatal Rat Cardiomyocyte Cultures
AR Natarajan, Q Rong, AN Katchman, SN Ebert |
Pediatric Research | 2004 |
Methods in Cell Biology
JW Smith |
Methods in cell biology | 2002 |
Null mutation of connexin43 causes slow propagation of ventricular activation in the late stages of mouse embryonic development
D Vaidya, HS Tamaddon, CW Lo, SM Taffet, M Delmar, GE Morley, J Jalife |
Circulation research | 2001 |
Ontogeny of humoral heart rate regulation in the embryonic mouse
GA Porter, SA Rivkees |
American Journal of Physiology - Regulatory, Integrative and Comparative Physiology | 2001 |
Drug Toxicity in Embryonic Development II
RJ Kavlock, GP Daston |
1997 | |
Physiological activities of late-gestation rat fetuses in vitro
T Suzue |
Neuroscience Research | 1992 |
Physiology and Pathophysiology of the Heart
N Sperelakis |
1989 | |
Topographical and Morphological Studies of the Cardiac Ganglia in the Prenatal Rat
KM LIU, S INOKUCHI |
The Showa University Journal of Medical Sciences | 1989 |
Acetylcholinesterase in prenatal rat heart: A marker for the early development of the cardiac conductive tissue?
WH Lamers, AT Korstschot, JA Los, AF Moorman |
The Anatomical Record | 1987 |
Developmental Neurobiology of the Autonomic Nervous System
PM Gootman |
1986 | |
Pediatric and Fundamental Electrocardiography
J Liebman, R Plonsey, Y Rudy |
1986 | |
Fetal Heart Rate Monitoring
W Künzel |
1985 | |
The Developing Heart
MJ Legato |
1984 | |
Glucagon II
PJ Lefebvre |
1983 | |
Responsiveness to drugs and hormones in the murine model of cardiac ontogenesis
WR Roeske, K Wildenthal |
Pharmacology & Therapeutics | 1981 |
Emergence of beta-adrenergic sensitivity in the developing chicken heart
S Lipshultz, J Shanfeld, S Chacko |
Proceedings of the National Academy of Sciences | 1981 |
Rate, force and cyclic adenosine 3',5'-monophosphate responses to (--)-adrenaline in neonatal rat heart tissue
TL Au, GA Collins, MJ Walker |
British Journal of Pharmacology | 1980 |
RATE, FORCE AND CYCLIC ADENOSINE 3′, 5′-MONOPHOSPHATE RESPONSES TO (-)-ADRENALINE IN NEONATAL RAT HEART TISSUE
T Au, G Collins, M Walker |
British Journal of Pharmacology | 1980 |
Ontogeny of mammalian myocardial β-adrenergic receptors
FC Chen, HI Yamamura, WR Roeske |
European Journal of Pharmacology | 1979 |
Catecholamines: Basic and Clinical Frontiers
EH LaBrosse |
Catecholamines: Basic and Clinical Frontiers | 1979 |
The postnatal development of adrenoceptor responses to agonists and electrical stimulation in rat isolated atria
NB Standen |
British Journal of Pharmacology | 1978 |
Time course for development of vagal inhibition of the heart in neonatal rats
E Mills |
Life Sciences | 1978 |
Negative chronotropic action of cyclic AMP on the fetal rat heart in organ culture
CL Eyer, WE Johnson |
European Journal of Pharmacology | 1978 |
Maturation of mammalian myocardial muscarinic cholinergic receptors
WR Roeske, HI Yamamura |
Life Sciences | 1978 |
Cyclic nucleotide phosphodiesterase and protein activator in fetal rabbit tissues
AL Singer, A Dunn, MM Appleman |
Archives of Biochemistry and Biophysics | 1978 |
THE POSTNATAL DEVELOPMENT OF ADRENOCEPTOR RESPONSES TO AGONISTS AND ELECTRICAL STIMULATION IN RAT ISOLATED ATRIA
N Standen |
British Journal of Pharmacology | 1978 |
Effects of acetylcholine on the ventricular specialized conducting system of neonatal and adult dogs
P Danilo, MR Rosen, AJ Hordof |
Circulation research | 1978 |
Chronotropic and cyclic adenosine monophosphate response of fetal rat heart in organ culture to isoproterenol, quinidine, and a dysrhythmogenic agent
CL Eyer, WE Johnson |
Journal of Pharmaceutical Sciences | 1977 |
Responsiveness to glucagon in fetal hearts. Species variability and apparent disparities between changes in beating, adenylate cyclase activation, and cyclic AMP concentration
K Wildenthal, DO Allen, J Karlsson, JR Wakeland, CM Clark |
Journal of Clinical Investigation | 1976 |
Advances in General and Cellular Pharmacology
T Narahashi, CP Bianchi |
1976 | |
Fetal mouse hearts: a model for studying ischemia
JS Ingwall, M DeLuca, HD Sybers, K Wildenthal |
Proceedings of the National Academy of Sciences | 1975 |
Development of the cardiac beta adrenergic receptor in fetal rat heart
S Martin, BA Levey, GS Levey |
Biochemical and Biophysical Research Communications | 1973 |