Elevated plasma adrenaline in spontaneously hypertensive rats. 1994

L T Jablonskis, and P R Howe
Division of Human Nutrition, Commonwealth Scientific and Industrial Research Organisation, Adelaide, Australia.

Having found that circulating adrenaline (AD) is selectively elevated in stroke-prone spontaneously hypertensive rats (SHRSP) compared with Wistar-Kyoto rats (WKY), we extended the comparison to include other normotensive and hypertensive rat strains. Aortic catheters were implanted in young (5-7 weeks) and old (7-9 months) WKY, Black-Hooded Wistar (BHW), Sprague Dawley (SD), spontaneously hypertensive rats (SHR) and SHRSP for repeated measurement of mean arterial pressure (MAP) and blood sampling under conscious resting conditions. In the young SHR and SHRSP, MAP was already significantly higher than in age-matched WKY but MAP in the SD rats was similar. Plasma AD was significantly higher in SHR and lower in SD rats when compared with WKY. There was no difference in plasma noradrenaline (NA) between strains at this age. At the older age, MAP was 40-60 mmHg higher in SHR and SHRSP than in WKY and BHW but was significantly lower in the SD strain. Circulating AD did not differ between the normotensive strains but was 3-4 times higher in the hypertensive strains. Plasma NA was elevated in SHR only. The acute reduction of MAP caused by ganglion blockade (an index of the sympathetically mediated component of resting blood pressure) was greater in SHR and SHRSP than in WKY at the older age only. However, the residual MAP after ganglion blockade was significantly higher in the hypertensive strains at both ages. Regression analysis showed that in the older rats, plasma AD was correlated with resting MAP, the reduction in MAP with ganglion blockade, the residual MAP and plasma NA.(ABSTRACT TRUNCATED AT 250 WORDS)

UI MeSH Term Description Entries
D008297 Male Males
D009638 Norepinephrine Precursor of epinephrine that is secreted by the ADRENAL MEDULLA and is a widespread central and autonomic neurotransmitter. Norepinephrine is the principal transmitter of most postganglionic sympathetic fibers, and of the diffuse projection system in the brain that arises from the LOCUS CERULEUS. It is also found in plants and is used pharmacologically as a sympathomimetic. Levarterenol,Levonorepinephrine,Noradrenaline,Arterenol,Levonor,Levophed,Levophed Bitartrate,Noradrenaline Bitartrate,Noradrénaline tartrate renaudin,Norepinephrin d-Tartrate (1:1),Norepinephrine Bitartrate,Norepinephrine Hydrochloride,Norepinephrine Hydrochloride, (+)-Isomer,Norepinephrine Hydrochloride, (+,-)-Isomer,Norepinephrine d-Tartrate (1:1),Norepinephrine l-Tartrate (1:1),Norepinephrine l-Tartrate (1:1), (+,-)-Isomer,Norepinephrine l-Tartrate (1:1), Monohydrate,Norepinephrine l-Tartrate (1:1), Monohydrate, (+)-Isomer,Norepinephrine l-Tartrate (1:2),Norepinephrine l-Tartrate, (+)-Isomer,Norepinephrine, (+)-Isomer,Norepinephrine, (+,-)-Isomer
D011918 Rats, Inbred SHR A strain of Rattus norvegicus with elevated blood pressure used as a model for studying hypertension and stroke. Rats, Spontaneously Hypertensive,Rats, SHR,Inbred SHR Rat,Inbred SHR Rats,Rat, Inbred SHR,Rat, SHR,Rat, Spontaneously Hypertensive,SHR Rat,SHR Rat, Inbred,SHR Rats,SHR Rats, Inbred,Spontaneously Hypertensive Rat,Spontaneously Hypertensive Rats
D011921 Rats, Inbred WKY A strain of Rattus norvegicus used as a normotensive control for the spontaneous hypertensive rats (SHR). Rats, Wistar Kyoto,Wistar Kyoto Rat,Rats, WKY,Inbred WKY Rat,Inbred WKY Rats,Kyoto Rat, Wistar,Rat, Inbred WKY,Rat, WKY,Rat, Wistar Kyoto,WKY Rat,WKY Rat, Inbred,WKY Rats,WKY Rats, Inbred,Wistar Kyoto Rats
D001794 Blood Pressure PRESSURE of the BLOOD on the ARTERIES and other BLOOD VESSELS. Systolic Pressure,Diastolic Pressure,Pulse Pressure,Pressure, Blood,Pressure, Diastolic,Pressure, Pulse,Pressure, Systolic,Pressures, Systolic
D002561 Cerebrovascular Disorders A spectrum of pathological conditions of impaired blood flow in the brain. They can involve vessels (ARTERIES or VEINS) in the CEREBRUM, the CEREBELLUM, and the BRAIN STEM. Major categories include INTRACRANIAL ARTERIOVENOUS MALFORMATIONS; BRAIN ISCHEMIA; CEREBRAL HEMORRHAGE; and others. Brain Vascular Disorders,Intracranial Vascular Disorders,Vascular Diseases, Intracranial,Cerebrovascular Diseases,Cerebrovascular Insufficiency,Cerebrovascular Occlusion,Brain Vascular Disorder,Cerebrovascular Disease,Cerebrovascular Disorder,Cerebrovascular Insufficiencies,Cerebrovascular Occlusions,Disease, Cerebrovascular,Diseases, Cerebrovascular,Insufficiencies, Cerebrovascular,Insufficiency, Cerebrovascular,Intracranial Vascular Disease,Intracranial Vascular Diseases,Intracranial Vascular Disorder,Occlusion, Cerebrovascular,Occlusions, Cerebrovascular,Vascular Disease, Intracranial,Vascular Disorder, Brain,Vascular Disorder, Intracranial,Vascular Disorders, Brain,Vascular Disorders, Intracranial
D004837 Epinephrine The active sympathomimetic hormone from the ADRENAL MEDULLA. It stimulates both the alpha- and beta- adrenergic systems, causes systemic VASOCONSTRICTION and gastrointestinal relaxation, stimulates the HEART, and dilates BRONCHI and cerebral vessels. It is used in ASTHMA and CARDIAC FAILURE and to delay absorption of local ANESTHETICS. Adrenaline,4-(1-Hydroxy-2-(methylamino)ethyl)-1,2-benzenediol,Adrenaline Acid Tartrate,Adrenaline Bitartrate,Adrenaline Hydrochloride,Epifrin,Epinephrine Acetate,Epinephrine Bitartrate,Epinephrine Hydrochloride,Epinephrine Hydrogen Tartrate,Epitrate,Lyophrin,Medihaler-Epi,Acetate, Epinephrine
D000375 Aging The gradual irreversible changes in structure and function of an organism that occur as a result of the passage of time. Senescence,Aging, Biological,Biological Aging
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001340 Autonomic Nerve Block Interruption of sympathetic pathways, by local injection of an anesthetic agent, at any of four levels: peripheral nerve block, sympathetic ganglion block, extradural block, and subarachnoid block. Sympathetic Nerve Block,Autonomic Nerve Blocks,Block, Autonomic Nerve,Block, Sympathetic Nerve,Blocks, Autonomic Nerve,Blocks, Sympathetic Nerve,Nerve Block, Autonomic,Nerve Block, Sympathetic,Nerve Blocks, Autonomic,Nerve Blocks, Sympathetic,Sympathetic Nerve Blocks

Related Publications

L T Jablonskis, and P R Howe
August 1992, Clinical and experimental pharmacology & physiology,
L T Jablonskis, and P R Howe
November 1981, Japanese heart journal,
L T Jablonskis, and P R Howe
February 1980, Clinical and experimental hypertension,
L T Jablonskis, and P R Howe
January 1994, The American journal of physiology,
L T Jablonskis, and P R Howe
August 1987, Journal of applied physiology (Bethesda, Md. : 1985),
L T Jablonskis, and P R Howe
July 2011, Journal of applied physiology (Bethesda, Md. : 1985),
L T Jablonskis, and P R Howe
September 1979, Japanese heart journal,
L T Jablonskis, and P R Howe
December 1982, Life sciences,
L T Jablonskis, and P R Howe
October 1989, Hypertension (Dallas, Tex. : 1979),
Copied contents to your clipboard!