Abstract
One of the most important features of liver cirrhosis is the splanchnic and systemic arterial vasodilation, related to an increase in vascular capacity and an active vasodilation. This arterial vasodilation seems to be the consequence of the excessive generation of vasodilating substances, which also contributes to a lower than normal pressor response to circulating nervous or humoral substances. The following review analyzes the mechanisms responsible for the vascular hyporesponse to vasoconstrictors observed in the experimental models of liver cirrhosis. It has become increasingly clear that, among the great variety of substances studied, nitric oxide (NO) seems to be one of the main contributors to this vascular alteration, since elimination of the endothelium or inhibition of its synthesis corrects it. The mechanism by which NO interferes with the contractile apparatus in smooth muscle cells seems to be related to a direct effect on calcium entry from the extracellular space and release from the internal stores.
Keywords: endothelium, smooth muscle cells, nitric oxide, liver cirrhosis, vasoconstrictors, vasodilation, portal hypertension
Current Vascular Pharmacology
Title: Role of Vascular Nitric Oxide in Experimental Liver Cirrhosis
Volume: 3 Issue: 1
Author(s): Noemi M. Atucha, F. Javi A. Nadal, David Iyu, Antonia Alcaraz, Alicia Rodriguez-Barbero, M. Clara Ortiz, Jose Miguel Lopez-Novoa and Joaquin Garcia-Estan
Affiliation:
Keywords: endothelium, smooth muscle cells, nitric oxide, liver cirrhosis, vasoconstrictors, vasodilation, portal hypertension
Abstract: One of the most important features of liver cirrhosis is the splanchnic and systemic arterial vasodilation, related to an increase in vascular capacity and an active vasodilation. This arterial vasodilation seems to be the consequence of the excessive generation of vasodilating substances, which also contributes to a lower than normal pressor response to circulating nervous or humoral substances. The following review analyzes the mechanisms responsible for the vascular hyporesponse to vasoconstrictors observed in the experimental models of liver cirrhosis. It has become increasingly clear that, among the great variety of substances studied, nitric oxide (NO) seems to be one of the main contributors to this vascular alteration, since elimination of the endothelium or inhibition of its synthesis corrects it. The mechanism by which NO interferes with the contractile apparatus in smooth muscle cells seems to be related to a direct effect on calcium entry from the extracellular space and release from the internal stores.
Export Options
About this article
Cite this article as:
Atucha M. Noemi, Nadal Javi A. F., Iyu David, Alcaraz Antonia, Rodriguez-Barbero Alicia, Ortiz Clara M., Lopez-Novoa Miguel Jose and Garcia-Estan Joaquin, Role of Vascular Nitric Oxide in Experimental Liver Cirrhosis, Current Vascular Pharmacology 2005; 3 (1) . https://dx.doi.org/10.2174/1570161052773889
DOI https://dx.doi.org/10.2174/1570161052773889 |
Print ISSN 1570-1611 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-6212 |
Call for Papers in Thematic Issues
TREATMENT OF CARDIOVASCULAR DISEASE IN CHRONIC AND END STAGE KIDNEY DISEASE
Cardiovascular disease still remains the leading cause of death in Chronic and End Stage Kidney Disease, accounting for more than half of all deaths in dialysis patients. During the past decade, research has been focused on novel therapeutic agents that might delay or even reverse cardiovascular disease and vascular calcification, ...read more
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Inhibition of Drug Efflux in Mycobacteria with Phenothiazines and Other Putative Efflux Inhibitors
Recent Patents on Anti-Infective Drug Discovery JAK Inhibitors: Pharmacology and Clinical Activity in Chronic Myeloprolipherative Neoplasms
Current Medicinal Chemistry Subject Index To Volume 6
Endocrine, Metabolic & Immune Disorders - Drug Targets Lactic Acidosis, Hypotension, and Sensorineural Hearing Loss Following Intentional Metformin Overdose
Current Drug Safety Evolution of Biomarker Guided Therapy for Heart Failure: Current Concepts and Trial Evidence
Current Cardiology Reviews Adrenomedullin as a Potential Therapeutic Agent for Inflammatory Bowel Disease
Current Protein & Peptide Science Anti-Inflammatory Approaches to Reduce Acute Cardiovascular Events: Not Only Benefits
Current Pharmaceutical Biotechnology Trypanosomatid Parasites Causing Neglected Diseases
Current Medicinal Chemistry Bioactive Peptides in Preventative Healthcare: An Overview of Bioactivities and Suggested Methods to Assess Potential Applications
Current Pharmaceutical Design RAS in the Central Nervous System: Potential Role in Neuropsychiatric Disorders
Current Medicinal Chemistry The Role of Transforming Growth Factor β1 in the Regulation of Blood Pressure
Current Hypertension Reviews Introduction to the Special Issue “Pharmacotherapies for the Treatment of Alcohol Abuse and Dependence” and a Summary of Patents Targeting other Neurotransmitter Systems
Recent Patents on CNS Drug Discovery (Discontinued) Beyond Rodent Models of Pain: Non-Human Primate Models for Evaluating Novel Analgesic Therapeutics and Elaborating Pain Mechanisms
CNS & Neurological Disorders - Drug Targets Hydrogen Peroxide Produced by Mitochondrial Monoamine Oxidase Catalysis: Biological Implications
Current Pharmaceutical Design Scope and Limitations of The Co-Drug Approach to Topical Drug Delivery
Current Pharmaceutical Design Pharmacologic Treatment of Pulmonary Arterial Hypertension
Current Pharmaceutical Design Need for Nutritious Convenience Foods for the Elderly Population: A Review
Current Nutrition & Food Science Increased Production of Nitric Oxide Mediates Selective Organ-Specific Effects of Endotoxin on Oxidative Stress
Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry Mitochondrial Biogenesis: Regulation By Endogenous Gases During Inflammation and Organ Stress
Current Pharmaceutical Design Mobile Phone Text Message Interventions in Psychiatry - What are the Possibilities?
Current Psychiatry Reviews