The Protective Arm of the Renin Angiotensin System (RAS): Functional Aspects and Therapeutic Implications
Editat de Thomas Unger, U. Muscha Steckelings, Robson Augusto Souza dos Santosen Limba Engleză Paperback – 22 apr 2015
- Provides a complete understanding of the protective side of the Renin Angiotensin System (RAS) involving angiotensin AT2 receptor, ACE2, and Ang(1-7)/Mas receptor
- Combines the knowledge of editors who pioneered research on the protective renin angiotensin system including; Dr. Thomas Unger, one of the founders of AT2 receptor research; Dr. Ulrike M. Steckelings, who contributed significantly to first preclinical studies with a novel specific AT2-agonist, and Dr. Robson Santos who pioneered research on angiotensin-(1-7) and its receptor Mas.
- Shows that the protective RAS axes are able to ameliorate the course of several cardiovascular, renal, metabolic and neurological diseases
- Provides the basis for the understanding of a novel therapeutic approach to stimulate components of the protective arm of the RAS.
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Specificații
ISBN-13: 9780128013649
ISBN-10: 0128013648
Pagini: 316
Dimensiuni: 216 x 276 x 15 mm
Greutate: 0.84 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128013648
Pagini: 316
Dimensiuni: 216 x 276 x 15 mm
Greutate: 0.84 kg
Editura: ELSEVIER SCIENCE
Public țintă
Cardiology researchers, Cardiologists, Surgeons, Nephrologists, Diabetologists, and EndocrinologistsCuprins
Part I: The AT2 Receptor
Introduction
The AT2 receptor: from enigma to therapeutic target
AT2 receptor detection by selective ligands
Basic mechanisms and signaling
Animal models with a genetic alteration of AT2 expression
AT2 signaling: resolved and unresolved
AT1-AT2 crosstalk
(Patho)-physiological effects of AT2R stimulation
AT2R in Myocardial infarction and congestive heart failure
AT2R, vascular effects, blood pressure effects
AT2R in neuroprotection and -regeneration
AT2R and cognitive function
AT2R in kidney disease
AT2R and natriuresis
AT2R and vascular remodeling
AT2R and inflammation
AT2R, ATIP and cancer
AT2R and sympathetic outflow
Metabolic effects of AT2R stimulation
Gender differences in AT2R expression and actions
Future clinical application
Discovery of non-peptide selective AT2R agonists
Synthesis of peptide AT2 agonists
Potential future clinical indications for AT2-agonists
Part II: MAS Receptor / Ang(1-7) / ACE-2:
Introduction
The Mas Story
Basic mechanisms and signaling
Animal models with a genetic alteration of ACE2/MAS
MAS signaling: resolved and unresolved
MAS dimerisation and MAS/AT2 crosstalk
Basic aspects of ACE-2 regulation and function
(Patho)-physiological effects of MAS stimulation
MAS in Myocardial infarction and congestive heart failure
MAS, vascular effects, blood pressure effects
MAS in neuroprotection and -regeneration
MAS and cognitive function
MAS in the kidney
Introduction
The AT2 receptor: from enigma to therapeutic target
AT2 receptor detection by selective ligands
Basic mechanisms and signaling
Animal models with a genetic alteration of AT2 expression
AT2 signaling: resolved and unresolved
AT1-AT2 crosstalk
(Patho)-physiological effects of AT2R stimulation
AT2R in Myocardial infarction and congestive heart failure
AT2R, vascular effects, blood pressure effects
AT2R in neuroprotection and -regeneration
AT2R and cognitive function
AT2R in kidney disease
AT2R and natriuresis
AT2R and vascular remodeling
AT2R and inflammation
AT2R, ATIP and cancer
AT2R and sympathetic outflow
Metabolic effects of AT2R stimulation
Gender differences in AT2R expression and actions
Future clinical application
Discovery of non-peptide selective AT2R agonists
Synthesis of peptide AT2 agonists
Potential future clinical indications for AT2-agonists
Part II: MAS Receptor / Ang(1-7) / ACE-2:
Introduction
The Mas Story
Basic mechanisms and signaling
Animal models with a genetic alteration of ACE2/MAS
MAS signaling: resolved and unresolved
MAS dimerisation and MAS/AT2 crosstalk
Basic aspects of ACE-2 regulation and function
(Patho)-physiological effects of MAS stimulation
MAS in Myocardial infarction and congestive heart failure
MAS, vascular effects, blood pressure effects
MAS in neuroprotection and -regeneration
MAS and cognitive function
MAS in the kidney