Description

Book Synopsis
Sodiumpotassium adenosine triphosphatase (Na+/K+-ATPase) is an enzyme located in the plasma membrane of most eukaryotic cells, responsible for maintaining ion concentration gradients against their concentration scale using ATP hydrolysis as a source of energy. The enzyme is involved in many cellular activities, including maintaining cell volume, transporting nutrition, electrical potential, neurotransmission, and any dysfunction or modification of enzyme activity is directly linked to many diseases, such as epilepsy, cardiovascular disease and hypertension, diabetes and other metabolic disorders, digoxin toxicity, fetal abnormalities, neurological disorders, and pulmonary conditions. In this book, the authors present current research on regulation strategies, Na⁺/K⁺-ATPase as a biomarker in diseased states, and the use of Na⁺/K⁺-ATPase in the physiological and ecological adaptations of insects. Other topics discussed in this compilation include the effects of hormonal and non-hormonal stimulation on Na+/K+-ATPase activity, the physiology and pathophysiology of Na+/K+-ATPase, Na⁺/K⁺-ATPase as a biomarker for energy metabolism and oxidative stress in diseased states, the neurotensin inhibitory effects of [3H]-Ouabain binding to striatal membranes and inversion by administration of clozapine, and Na+/K+-ATPases important functional roles in human body.

Table of Contents
Preface; Effect of Glutathionlyation, Hormonal and Non-Hormonal Stimulation on Na+/K+-ATPases Activity; Physiology and Pathophysiology of Na+/K+-ATPase; Na⁺/K⁺-ATPase as a Biomarker for Energy Metabolism and Oxidative Stress in Diseased States; Neurotensin Inhibitory Effect on [3H]-Ouabain Binding to Striatal Membranes Is Inverted by Administration of Clozapine; Na+/K+-ATPase: Important Functional Roles in the Human Body; Role of Na+/K+-ATPases in the Physiological and Ecological Adaptations of Insects; Index.

Na+K+-ATPase: Discovery, Functions and Regulation

    Product form

    £67.99

    Includes FREE delivery

    RRP £84.99 – you save £17.00 (20%)

    Order before 4pm today for delivery by Fri 31 Jul 2026.

    A Paperback / softback by Mohammed Awad Ali Khlaid

    Out of stock

      Trusted by thousands of customers. See 2,385+ Customer Reviews

      View other formats and editions of Na+K+-ATPase: Discovery, Functions and Regulation by Mohammed Awad Ali Khlaid

      Publisher: Nova Science Publishers Inc
      Publication Date: Publication Date: 08/01/2021
      ISBN13: 9781536189681, 978-1536189681
      ISBN10: 1536189685

      Description

      Book Synopsis
      Sodiumpotassium adenosine triphosphatase (Na+/K+-ATPase) is an enzyme located in the plasma membrane of most eukaryotic cells, responsible for maintaining ion concentration gradients against their concentration scale using ATP hydrolysis as a source of energy. The enzyme is involved in many cellular activities, including maintaining cell volume, transporting nutrition, electrical potential, neurotransmission, and any dysfunction or modification of enzyme activity is directly linked to many diseases, such as epilepsy, cardiovascular disease and hypertension, diabetes and other metabolic disorders, digoxin toxicity, fetal abnormalities, neurological disorders, and pulmonary conditions. In this book, the authors present current research on regulation strategies, Na⁺/K⁺-ATPase as a biomarker in diseased states, and the use of Na⁺/K⁺-ATPase in the physiological and ecological adaptations of insects. Other topics discussed in this compilation include the effects of hormonal and non-hormonal stimulation on Na+/K+-ATPase activity, the physiology and pathophysiology of Na+/K+-ATPase, Na⁺/K⁺-ATPase as a biomarker for energy metabolism and oxidative stress in diseased states, the neurotensin inhibitory effects of [3H]-Ouabain binding to striatal membranes and inversion by administration of clozapine, and Na+/K+-ATPases important functional roles in human body.

      Table of Contents
      Preface; Effect of Glutathionlyation, Hormonal and Non-Hormonal Stimulation on Na+/K+-ATPases Activity; Physiology and Pathophysiology of Na+/K+-ATPase; Na⁺/K⁺-ATPase as a Biomarker for Energy Metabolism and Oxidative Stress in Diseased States; Neurotensin Inhibitory Effect on [3H]-Ouabain Binding to Striatal Membranes Is Inverted by Administration of Clozapine; Na+/K+-ATPase: Important Functional Roles in the Human Body; Role of Na+/K+-ATPases in the Physiological and Ecological Adaptations of Insects; Index.

      Recently viewed products

      © 2026 Book Curl

        • American Express
        • Apple Pay
        • Diners Club
        • Discover
        • Google Pay
        • Maestro
        • Mastercard
        • PayPal
        • Shop Pay
        • Union Pay
        • Visa

        Login

        Forgot your password?

        Don't have an account yet?
        Create account