Fr. 189.00

Bile Acids and Their Receptors

English · Hardback

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Description

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This book focusses on the latest results related to the field of  bile acids as signaling molecules  and describes how these receptors have become a major pharmacological target. It covers all major areas of research in this field, from genetics, chemistry, in silico modeling, molecular biology to clinical applications, offering a cross-country view of the functional role of bile acids as signaling molecules, virtually acting on all major areas of metabolism. While FXR  and GPBAR1 are essential bile acid sensors that  integrate the de novo bile acid synthesis with intestinal microbiota and  liver metabolism, in a broader sense,  BARs  play a pathogenic role in the development of common human alignments  including  liver, intestinal and metabolic disorders, such as steatosis (NAFLD) and steato-hepatitis (NASH), diabetes, obesity and atherosclerosis. 

List of contents

Preface.- Part 1. Bile acids   as   signaling molecules  and their  receptors.- 1. A short history of bile acid pharmacology.- 2. Bile acids  activated receptors: a review of  GPBAR1  (TGR5) and other G-protein-coupled receptors.- 3. Bile acid activated receptors: a review of FXR and other Nuclear receptors.- 4. The intestinal enterokine fibroblast growth factor 15/19 in bile acid metabolism.- 5. Signaling from intestine to  the host. How bile acids regulate intestinal and liver immunity.- Part 2.  General pharmacology of  bile acid activated receptors and their ligands.- 6. Modeling of bile acid activated receptors as a tool for pharmacological development.- 7. Chemistry and pharmacology of GPBAR1 and  FXR selective agonists, dual agonists and antagonists.- 8. Non steroidal FXR ligands: current status and  clinical applications.- 9.  Intestinal selective FXR agonists and their potential in treating liver and metabolic diseases.- Part 3. Bile acids and their derivatives as drugs.- 10. UDCA, Nor-UDCA and T-UDCA: a review of their mechanisms of action and clinical applications.- 11. Chenodeoxycholic acid: an update on its therapeutic appplications and safety profile.- 12. Obeticholic acid: a review of   its mechanisms of action and  clinical applications.- Part 4. Bile acid activated receptors as therapeutic targets.- 13. Targeting FXR in cholestasis.- 14. FXR agonists for the treatment of NASH and other  metabolic disorders.- 15. Targeting bile acids activated receptors in bariatric surgery.

Summary

This book focusses on the latest results related to the field of  bile acids as signaling molecules  and describes how these receptors have become a major pharmacological target. It covers all major areas of research in this field, from genetics, chemistry, in silico modeling, molecular biology to clinical applications, offering a cross-country view of the functional role of bile acids as signaling molecules, virtually acting on all major areas of metabolism. While FXR  and GPBAR1 are essential bile acid sensors that  integrate the de novo bile acid synthesis with intestinal microbiota and  liver metabolism, in a broader sense,  BARs  play a pathogenic role in the development of common human alignments  including  liver, intestinal and metabolic disorders, such as steatosis (NAFLD) and steato-hepatitis (NASH), diabetes, obesity and atherosclerosis. 

Product details

Assisted by Distrutti (Editor), Distrutti (Editor), Eleonora Distrutti (Editor), Stefan Fiorucci (Editor), Stefano Fiorucci (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2019
 
EAN 9783030220044
ISBN 978-3-0-3022004-4
No. of pages 378
Dimensions 159 mm x 274 mm x 27 mm
Weight 749 g
Illustrations X, 378 p. 57 illus., 37 illus. in color.
Series Handbook of Experimental Pharmacology
Handbook of Experimental Pharmacology
Subjects Natural sciences, medicine, IT, technology > Medicine > Pharmacy

Endokrinologie, B, Klinische und Innere Medizin, Gastrointestinale und kolorektale Chirurgie, INTERNAL MEDICINE, Endocrinology, Hepatology, Gastroenterology, Pharmacology, Biomedical and Life Sciences, Pharmacology/Toxicology

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