Go to JCI Insight
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Publication ethics
  • Publication alerts by email
  • Advertising
  • Job board
  • Contact
  • Clinical Research and Public Health
  • Current issue
  • Past issues
  • By specialty
    • COVID-19
    • Cardiology
    • Gastroenterology
    • Immunology
    • Metabolism
    • Nephrology
    • Neuroscience
    • Oncology
    • Pulmonology
    • Vascular biology
    • All ...
  • Videos
    • Conversations with Giants in Medicine
    • Video Abstracts
  • Reviews
    • View all reviews ...
    • Complement Biology and Therapeutics (May 2025)
    • Evolving insights into MASLD and MASH pathogenesis and treatment (Apr 2025)
    • Microbiome in Health and Disease (Feb 2025)
    • Substance Use Disorders (Oct 2024)
    • Clonal Hematopoiesis (Oct 2024)
    • Sex Differences in Medicine (Sep 2024)
    • Vascular Malformations (Apr 2024)
    • View all review series ...
  • Viewpoint
  • Collections
    • In-Press Preview
    • Clinical Research and Public Health
    • Research Letters
    • Letters to the Editor
    • Editorials
    • Commentaries
    • Editor's notes
    • Reviews
    • Viewpoints
    • 100th anniversary
    • Top read articles

  • Current issue
  • Past issues
  • Specialties
  • Reviews
  • Review series
  • Conversations with Giants in Medicine
  • Video Abstracts
  • In-Press Preview
  • Clinical Research and Public Health
  • Research Letters
  • Letters to the Editor
  • Editorials
  • Commentaries
  • Editor's notes
  • Reviews
  • Viewpoints
  • 100th anniversary
  • Top read articles
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Publication ethics
  • Publication alerts by email
  • Advertising
  • Job board
  • Contact

Citations to this article

Endothelium dependency of contractile activity differs in infant and adult vertebral arteries.
J R Charpie, … , S M Papadopoulos, R C Webb
J R Charpie, … , S M Papadopoulos, R C Webb
Published March 1, 1994
Citation Information: J Clin Invest. 1994;93(3):1339-1343. https://doi.org/10.1172/JCI117093.
View: Text | PDF
Research Article

Endothelium dependency of contractile activity differs in infant and adult vertebral arteries.

  • Text
  • PDF
Abstract

Contractions to serotonin (5-HT) and endothelin-1 (ET-1) in infant (0-2 yr) and adult (38-71 yr) vertebral arteries were examined in the presence of either the cyclooxygenase inhibitor indomethacin or NG-monomethyl-L-arginine (L-NMMA), an inhibitor of nitric oxide production. In addition, endothelium-dependent relaxations to acetylcholine were characterized in arteries contracted with agonist. The results showed that: (a) Contractions of infant arteries to 5-HT or ET-1 decreased to 44 +/- 8% and 27 +/- 13%, respectively, within 10 min. Indomethacin or removal of endothelium abolished this decreased response, whereas L-NMMA had no effect. (b) Adult arteries produced sustained contractions to 5-HT or ET-1 that were unaffected by indomethacin, endothelium denudation, or L-NMMA. (c) Endothelium-dependent relaxations to acetylcholine were greater in infant than adult arteries and were abolished by indomethacin (but not L-NMMA) in infants and L-NMMA (but not indomethacin) in adults. Thus, endothelium-dependent responses in infant arteries are attenuated because of increased prostaglandin activity not observed in adult tissues. Additionally, there is an age-dependent change in the primary mechanism responsible for acetylcholine-induced vasodilation. Apparently, endothelium dependency of acetylcholine-induced relaxation is highly dependent on cyclooxygenase activity in the infant vertebral artery, but in the adult artery, nitric oxide is linked to the vasodilator response.

Authors

J R Charpie, K D Schreur, S M Papadopoulos, R C Webb

×

Total citations by year

Year: 2022 2021 2020 2018 2016 2015 2014 2013 2012 2011 2010 2009 2005 2003 2002 2001 1999 1998 1997 1996 1994 Total
Citations: 4 1 1 2 2 1 2 3 1 109 1 1 2 1 1 1 1 1 1 1 1 138
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (138)

Title and authors Publication Year
State of Knowledge on Molecular Adaptations to Exercise in Humans: Historical Perspectives and Future Directions
Lavin KM, Coen PM, Baptista LC, Bell MB, Drummer D, Harper SA, Lixandrão ME, McAdam JS, O\u2019Bryan SM, Ramos S, Roberts LM, Vega RB, Goodpaster BH, Bamman MM, Buford TW
Comprehensive Physiology 2022
Immune Function of Endothelial Cells: Evolutionary Aspects, Molecular Biology and Role in Atherogenesis.
Kotlyarov S
International journal of molecular sciences 2022
Physiological Systems in Promoting Frailty
Perazza LR, Brown-Borg HM, Thompson LV
Comprehensive Physiology 2022
Dynamic onset response of the internal carotid artery to hypercapnia is blunted in children compared with adults.
Tallon CM, Talbot JS, Smith KJ, Lewis N, Nowak-Flück D, Stembridge M, Ainslie P, McManus AM
Physiological Reports 2022
Multi-omic Approaches to Identify Genetic Factors in Metabolic Syndrome
Clark KC, Kwitek AE
Comprehensive Physiology 2021
Glucagon-like Peptide-1: Actions and Influence on Pancreatic Hormone Function
Davis EM, Sandoval DA
Comprehensive Physiology 2020
Pediatric physiology in relation to the pharmacokinetics of monoclonal antibodies
P Malik, A Edginton
Expert Opinion on Drug Metabolism & Toxicology 2018
ЦЕРЕБРАЛЬНЫЙ КРОВОТОК ПРИ ИШЕМИЧЕСКОМ ИНСУЛЬТЕ, "Российский физиологический журнал им. И.М. Сеченова"
КА Сысоев, ГИ Лобов, ДП Дворецкий
2018
Endothelial dysfunction and vascular disease - a 30th anniversary update
PM Vanhoutte, H Shimokawa, M Feletou, EH Tang
Acta physiologica (Oxford, England) 2016
Transition in the mechanism of flow-mediated dilation with aging and development of coronary artery disease
AM Beyer, N Zinkevich, B Miller, Y Liu, AL Wittenburg, M Mitchell, R Galdieri, A Sorokin, DD Gutterman
Basic Research in Cardiology 2016
Vascular function and brain-derived neurotrophic factor: The functional capacity factor
MA Alomari, OF Khabour, A Maikano, K Alawneh
Vascular medicine (London, England) 2015
Comprehensive Physiology
GF Clough
Comprehensive Physiology 2014
Coronary Circulation
JD Tune
Colloquium Series on Integrated Systems Physiology From Molecule to Function 2014
Diversity in Mechanisms of Endothelium-Dependent Vasodilation in Health and Disease
MJ Durand, DD Gutterman
Microcirculation 2013
Cerebral artery signal transduction mechanisms: developmental changes in dynamics and Ca2+ sensitivity
LD Longo, R Goyal
Current vascular pharmacology 2013
Pediatric Craniovertebral Junction Diseases
CD Rocco, N Akalan
2013
Changes in eNOS phosphorylation contribute to increased arteriolar NO release during juvenile growth
LS Kang, TR Nurkiewicz, G Wu, MA Boegehold
American journal of physiology. Heart and circulatory physiology 2012
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Endothelium-derived hyperpolarizing factor in the brain: influence of sex, vessel size and disease state
CM Davis, DA Siler, NJ Alkayed
Women's Health 2011
Brain-Derived Neurotrophic Factor Stimulates Production of Prostacyclin in Cerebral Arteries
AV Santhanam, LA Smith, ZS Katusic
Stroke; a journal of cerebral circulation 2010
Endothelial dysfunction and vascular disease
PM Vanhoutte, H Shimokawa, EH Tang, M Feletou
Acta Physiologica 2009
Maturational modulation of endothelium-dependent vasodilatation in ovine cerebral arteries
JM Williams, AD Hull, WJ Pearce
American Journal of Physiology - Regulatory, Integrative and Comparative Physiology 2005
Maturation enhances fluid shear-induced activation of eNOS in perfused ovine carotid arteries
CR White, MW Hamade, K Siami, MM Chang, A Mangalwadi, JA Frangos, WJ Pearce
American journal of physiology. Heart and circulatory physiology 2005
Maturation depresses mouse cerebrovascular tone through endothelium-dependent mechanisms
GG Geary, JN Buchholz, WJ Pearce
American Journal of Physiology - Regulatory, Integrative and Comparative Physiology 2003
COX-1 and COX-2 Contributions to Basal and IL-1β-Stimulated Prostanoid Synthesis in Human Neonatal Cerebral Microvascular Endothelial Cells
H Parfenova, V Levine, WM Gunther, M Pourcyrous, CW Leffler
Pediatric Research 2002
Causes of complications from cervical spine manipulation
T Mann, KM Refshauge
Australian Journal of Physiotherapy 2001
Does endothelin-1 reduce superior mesenteric artery blood flow velocity in preterm neonates?
FJ Weir, A Ohlsson, K Fong, K Amankwah, F Coceani
Archives of disease in childhood. Fetal and neonatal edition 1999
Regulation of the Cerebral Circulation: Role of Endothelium and Potassium Channels
FM Faraci, DD Heistad
Physiological reviews 1998
RAT AORTA AND MESENTERIC ARTERY RESPOND DIFFERENTLY TO SEROTONIN
B Adegunloye, O Sofola
Journal of Basic and Clinical Physiology and Pharmacology 1997
Acetylcholine Induces Contraction in Vertebral Arteries from Treated Hypertensive Patients
JR Charpie, KD Schreur, SM Papadopoulos, RC Webb
Clinical and Experimental Hypertension 1996
Different endothelin receptors involved in endothelin-1- and sarafotoxin S6B-induced contractions of the human isolated coronary artery
WA Bax, Z Aghai, CL van Tricht, C Wassenaar, PR Saxena
British Journal of Pharmacology 1994

← Previous 1 2 3 4 5 6 Next →

Advertisement

Copyright © 2025 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

Sign up for email alerts