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The Role of Neuronal Nitric Oxide Synthase (nNOS) in Ischaemia

The Role of Neuronal Nitric Oxide Synthase (nNOS) in Ischaemia
Author: Anupama Barua
Publisher:
Total Pages: 157
Release: 2010
Genre:
ISBN:

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Background: In physiological condition, NO is produced by two constitutive NOS isoforms; eNOS and nNOS. Both isoforms have specific cellular locations and although the role of eNOS in myocardial ischaemic injury and in cardioprotection has been thoroughly addressed, the role of nNOS remains unclear. Therefore, the aims of the thesis were to: (i) investigate the role of nNOS in ischaemia/reoxygenation-induced injury, (ii) determine whether its effect is species-dependent, (iii) elucidate the relationship of nNOS with mitoKATP channels and p38MAPK, two key components of IP and (iv) investigate whether modulation of the NO metabolism can overcome the unresponsiveness of the diabetic myocardium to IP. Methods and Results: Ventricular myocardial slices from rats and mice, nNOS knockout mice, and also from human right atrial slices were subjected to 90 min ischaemia and 120 min reoxygenation (37°C). Muscles were randomized to receive various treatments. Both the provision of exogenous NO and the inhibition of endogenous NO production significantly reduced tissue injury (creatine kinase release, cell necrosis and apoptosis), an effect that was species-independent. The protection seen with nNOS inhibition was as potent as that of IP, however, in nNOS-knocked out mice the cardioprotective effect of non-selective NOS (L-NAME) and selective nNOS inhibition (TRIM) and also that of IP was blocked while the benefit of exogenous NO remained intact. Additional studies revealed that the cardioprotection afforded by exogenous NO and by inhibition of nNOS were unaffected by the mitoKATP channel blocker 5-HD although it was abrogated by p38MAPK blocker SB203580. Finally, in diabetic myocardium, IP did not decrease CK release or reduce cell necrosis or apoptosis. In diabetic myocardium NO donor SNAP, inhibitor L-NAME and TRIM significantly reduced CK leakage, cell necrosis and apoptosis. Conclusions: nNOS plays a dual role in ischaemia/reoxygenation on that its presence is necessary to afford cardioprotection by IP but its inhibition reduces myocardial ischaemic injury. The role of nNOS is species-independent and exerted downstream of the mitoKATP channels and upstream of p38MAPK. Moreover, both the provision of exogenous NO and the suppression of endogenous NO production resulted in potent protection of diabetic human myocardium, overcoming the unresponsiveness of these tissues to IP.


Nitric Oxide Synthase

Nitric Oxide Synthase
Author: Seyed Soheil Saeedi Saravi
Publisher: BoD – Books on Demand
Total Pages: 250
Release: 2017-05-17
Genre: Science
ISBN: 953513163X

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Nitric Oxide Synthase - Simple Enzyme-Complex Roles provides information on nitric oxide synthase, a biomolecule of key importance for the different biological systems, including central and peripheral nervous, cardiovascular, and reproductive systems. With recent links to the role of nitric oxide in the reactions that can impact cell signaling, and discoveries surrounding the complex role of nitric oxide synthase that have increased research attention across the fields of cell and molecular biology, physiology, pharmacology, toxicology, neuroscience, cardiology, urology, and endocrinology, this book tries to provide a comprehensive overview of biology/pathobiology of nitric oxide synthases and a perspective from possible therapeutic indication of the enzyme inhibitors.


Nitric Oxide Synthase: Characterization and Functional Analysis

Nitric Oxide Synthase: Characterization and Functional Analysis
Author:
Publisher: Academic Press
Total Pages: 375
Release: 1996-09-18
Genre: Science
ISBN: 0080536379

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Although the function of nitric oxide in a regulatory capacity in the central and peripheral nervous system is widely recognized, the full scope of its actions and its interrelationships with other classes of regulatory molecules is just beginning to be comprehended. This volume contains a number of sophisticated and advanced methods essential for exploring the activity of nitric oxide in the brain. It will be a valuable tool for the established investigator and for those just entering the field. Comprehensive protocols included for detection of NO and related compounds by chemical, immunohistochemical, and in situ hybridization techniques Newly developed methods for the purification of neuronal and endothelial NO synthase, production of monoclonal antibodies to NO synthase, molecular cloning and expression of NO synthesis, and control of NO synthase gene expression Assessment of NO-mediated functions in neurons, central nervous system, cerebral circulation, synaptic transmission, and vascular tone Calcium imaging by confocal microscopy, evaluation of the effect of NO on iron metabolism, and detection of heme oxygenase-1 and -2 message level and distribution


Atherosclerosis

Atherosclerosis
Author: Hong Wang
Publisher: John Wiley & Sons
Total Pages: 628
Release: 2015-05-11
Genre: Science
ISBN: 1118285913

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Comprehensive and in-depth in its coverage, Atherosclerosis: Cellular, Molecular & Biochemical Mechanism and Novel Therapy reviews the recent progress in atherosclerosis research and offers cutting edge perspectives from experts in the field. Written by an international team of authors including leading physician-scientists, research experts and physicians, chapters are divided into four major sections, covering risk factors, cellular and molecular mechanisms, biochemical mechanisms and novel and future therapeutics. Atherosclerosis: Cellular, Molecular & Biochemical Mechanism and Novel Therapy analyses recent progress from both conceptual and technological perspectives, suggesting new directions for atherosclerosis research and treatment for a growing population of researchers and clinicians in cardiovascular and related fields.


Gupta and Gelb's Essentials of Neuroanesthesia and Neurointensive Care

Gupta and Gelb's Essentials of Neuroanesthesia and Neurointensive Care
Author: Arun Gupta
Publisher: Cambridge University Press
Total Pages: 427
Release: 2018-06-21
Genre: Medical
ISBN: 1316602524

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This second edition presents core clinical neuroanesthesia and neurointensive care knowledge in a practical, user-friendly format.


Systems Neuroscience in Depression

Systems Neuroscience in Depression
Author: Thomas Frodl
Publisher: Academic Press
Total Pages: 422
Release: 2016-03-16
Genre: Psychology
ISBN: 0128026286

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Systems Neuroscience in Depression provides a comprehensive overview of the normal and depressed brain processes as studied from a systems neuroscience perspective. Systems neuroscience uses a wide variety of approaches to study how networks of neurons form the bases of higher brain function. A broad overview is discussed starting with a background from neurodevelopment and neural understanding as well as novel treatment approaches for depression. This book covers basic developmental aspects and depressive psychopathology, as well as the basic scientific background from animal models and experimental research. Current advances in systems neuroscience are highlighted in studies from child and adolescent psychiatry. Integrated approaches are presented with regards to genetics, neuroimaging and neuroinflammation as well as neuroendocrinology. The field of systems and network neuroscience is evolving rapidly and this book provides a greatly needed resource for researchers and practitioners in systems neuroscience and psychiatry. Knowledge covering the whole life span from early to later life Comprehensively written chapters developing from molecules via epigenetics and neural circuits to clinical neuroscience Understanding the neurobiology of major depressive disorder Integrating stress and environmental factors with molecular underpinnings More than 25 illustrations and tables


Blood-Spinal Cord and Brain Barriers in Health and Disease

Blood-Spinal Cord and Brain Barriers in Health and Disease
Author: Hari Shanker Sharma
Publisher: Elsevier
Total Pages: 623
Release: 2003-12-21
Genre: Medical
ISBN: 0080528228

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Recent research into the anatomy and pathophysiology of the blood-brain and blood-spinal cord barriers suggests that a breakdown in these barriers can result in several diseases affecting the central nervous system (CNS). This book presents new findings in the area of blood-brain barrier research that suggest barriers play important roles in health and disease conditions. It also discusses the development of new drugs that can modulate the barrier function in the CNS and may provide new approaches to treating neurological diseases such as Alzheimer's disease and other motor neuron diseases, as well as spinal cord trauma. Key Features * Presents the recent progress made in the research on the blood-brain and spinal cord barrier * Contains numerous illustrations of light and electron micrographs * Includes Foreword written by two eminent researchers in the field, Milton Brightman and Jorge Cervos-Navarro


Role of Nitric Oxide Synthase in the Function of the Central Nervous System Under Normal and Infectious Conditions

Role of Nitric Oxide Synthase in the Function of the Central Nervous System Under Normal and Infectious Conditions
Author: Patricia Alves Reis
Publisher:
Total Pages:
Release: 2017
Genre: Science
ISBN:

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Nitric oxide (NO) was discovered as an endothelium-derived relaxing factor more than two decades ago. Since then, it has been shown to participate in many pathways. NO has been described as a key mediator of different pathways in the central nervous system (CNS) in both healthy and diseased processes. The three isoforms of nitric oxide synthase differ in their activity patterns and expression in different cells. Neuronal nitric oxide synthase (nNOS) is localized in synaptic spines, astrocytes, and the loose connective tissue surrounding blood vessels in the brain; eNOS is present in both cerebral vascular endothelial cells and motor neurons; and iNOS is induced in astrocytes and microglia under pathological conditions. During physiological processes, NO produced by eNOS/nNOS, respectively, controls blood flow activation, and act as a messenger during long-term potentiation (LTP). However, under pathological conditions, eNOS appears to be impaired, leading to a reduction in blood flow and, consequently, low oxygen/metabolites delivery, efflux of toxicological agents from the brain tissue and disturbance in the blood-brain barrier. The NO produced by iNOS in glial cells and nNOS, which triggers the NMDA-excitotoxic pathway, combines with superoxide anion and results in peroxynitrite synthesis, a potent free radical that contributes to tissue damage in the brain. Here, we intend to show the controversial role of the nitric oxide delivered by the three isoforms of the nitric oxide synthase in the CNS, assess its impact under healthy/pathological conditions and speculate on its possible sequela, particularly in long-term cognitive decline.