Cardiovascular and sympathetic effects of proadrenomedullin NH2-terminal 20 peptide in conscious rats

Proadrenomedullin NH2-terminal 20 peptide (PAMP) and adrenomedullin (AM), which are derived from the same gene, are novel vasodilative peptides and have been shown to exhibit hypotensive action in anesthetized animals. To avoid the modification via anesthesia, we investigated the effects of intraven...

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Published in:Regulatory peptides Vol. 77; no. 1-3; pp. 147 - 153
Main Authors: SAITA, M, ISHIZUKA, Y, KATO, K, KUNITAKE, T, HANAMORI, T, KITAMURA, K, ETO, T, KANNAN, H
Format: Journal Article
Language:English
Published: Shannon Elsevier 16-10-1998
Amsterdam
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Abstract Proadrenomedullin NH2-terminal 20 peptide (PAMP) and adrenomedullin (AM), which are derived from the same gene, are novel vasodilative peptides and have been shown to exhibit hypotensive action in anesthetized animals. To avoid the modification via anesthesia, we investigated the effects of intravenously administered PAMP on mean arterial pressure, heart rate (HR), and renal sympathetic nerve activity (RSNA) relative to those of AM in conscious unrestrained rats. We also examined whether the arterial baroreceptor reflex was altered with the two peptides. Intravenous injection of rat PAMP (rPAMP) (10, 20 and 50 nmol/kg) and rat AM (rAM) (0.3, 1.0 and 3.0 nmol/kg) similarly elicited dose-related hypotension accompanied by increases in HR and RSNA. However, the responses to rPAMP were less potent in magnitude and shorter in duration than those to rAM. Moreover, rAM facilitated baroreflex control, whereas rPAMP attenuated it. These findings indicate that although PAMP, as well as AM, may play an important role as a circulating hormone in the systemic circulation of conscious rats, the two peptides derived from an identical origin might have different mechanisms responsible for their cardiovascular and RSNA actions.
AbstractList Proadrenomedullin NH2-terminal 20 peptide (PAMP) and adrenomedullin (AM), which are derived from the same gene, are novel vasodilative peptides and have been shown to exhibit hypotensive action in anesthetized animals. To avoid the modification via anesthesia, we investigated the effects of intravenously administered PAMP on mean arterial pressure, heart rate (HR), and renal sympathetic nerve activity (RSNA) relative to those of AM in conscious unrestrained rats. We also examined whether the arterial baroreceptor reflex was altered with the two peptides. Intravenous injection of rat PAMP (rPAMP) (10, 20 and 50 nmol/kg) and rat AM (rAM) (0.3, 1.0 and 3.0 nmol/kg) similarly elicited dose-related hypotension accompanied by increases in HR and RSNA. However, the responses to rPAMP were less potent in magnitude and shorter in duration than those to rAM. Moreover, rAM facilitated baroreflex control, whereas rPAMP attenuated it. These findings indicate that although PAMP, as well as AM, may play an important role as a circulating hormone in the systemic circulation of conscious rats, the two peptides derived from an identical origin might have different mechanisms responsible for their cardiovascular and RSNA actions.
Author KANNAN, H
ETO, T
KATO, K
SAITA, M
HANAMORI, T
KITAMURA, K
KUNITAKE, T
ISHIZUKA, Y
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Issue 1-3
Keywords Peptides
Rat
Rodentia
Adrenomedullin
Sympathetic nervous system
Heart rate
Vertebrata
Mammalia
Metabolic precursor
Baroreflex
N terminal-Sequence
Arterial pressure
Hemodynamics
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Snippet Proadrenomedullin NH2-terminal 20 peptide (PAMP) and adrenomedullin (AM), which are derived from the same gene, are novel vasodilative peptides and have been...
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StartPage 147
SubjectTerms Adrenomedullin
Anesthesia
Animals
Antihypertensive Agents - pharmacology
Biological and medical sciences
Blood Pressure - drug effects
Cardiovascular System - drug effects
Fundamental and applied biological sciences. Psychology
Heart Rate - drug effects
Hemodynamics. Rheology
Injections, Intravenous
Male
Peptide Fragments - pharmacology
Peptides - pharmacology
Proteins - pharmacology
Rats
Rats, Wistar
Recombinant Proteins - pharmacology
Sympathetic Nervous System - drug effects
Time Factors
Vertebrates: cardiovascular system
Title Cardiovascular and sympathetic effects of proadrenomedullin NH2-terminal 20 peptide in conscious rats
URI https://www.ncbi.nlm.nih.gov/pubmed/9809809
https://search.proquest.com/docview/70037216
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