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Molecular Mechanism of Congenital Heart Disease and Pulmonary Hypertension

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Cover of 'Molecular Mechanism of Congenital Heart Disease and Pulmonary Hypertension'

Table of Contents

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    Book Overview
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    Chapter 1 Perspective for Part I
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    Chapter 2 The Alveolar Stem Cell Niche of the Mammalian Lung
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    Chapter 3 Lung Development and Notch Signaling
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    Chapter 7 Extracellular Vesicles, MicroRNAs, and Pulmonary Hypertension
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    Chapter 8 Roles of Tbx4 in the Lung Mesenchyme for Airway and Vascular Development
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    Chapter 10 Roles of Stem Cell Antigen-1 in the Pulmonary Endothelium
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    Chapter 11 Morphological Characterization of Pulmonary Microvascular Disease in Bronchopulmonary Dysplasia Caused by Hyperoxia in Newborn Mice
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    Chapter 12 Involvement of CXCR4 and Stem Cells in a Rat Model of Pulmonary Arterial Hypertension
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    Chapter 14 Perspective for Part II
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    Chapter 15 Pathophysiology of Pulmonary Circulation in Congenital Heart Disease
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    Chapter 16 Development of Novel Therapies for Pulmonary Hypertension by Clinical Application of Basic Research
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    Chapter 17 Using Patient-Specific Induced Pluripotent Stem Cells to Understand and Treat Pulmonary Arterial Hypertension
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    Chapter 19 Dysfunction and Restoration of Endothelial Cell Communications in Pulmonary Arterial Hypertension: Therapeutic Implications
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    Chapter 21 Genotypes and Phenotypes of Chinese Pediatric Patients with Idiopathic and Heritable Pulmonary Arterial Hypertension: Experiences from a Single Center
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    Chapter 22 Fundamental Insight into Pulmonary Vascular Disease: Perspectives from Pediatric PAH in Japan
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    Chapter 23 Risk Stratification in Paediatric Pulmonary Arterial Hypertension
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    Chapter 24 The Adaptive Right Ventricle in Eisenmenger Syndrome: Potential Therapeutic Targets for Pulmonary Hypertension?
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    Chapter 25 Impaired Right Coronary Vasodilator Function in Pulmonary Hypertensive Rats Assessed by In Vivo Synchrotron Microangiography
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    Chapter 26 Relationship Between Mutations in ENG and ALK1 Genes and the Affected Organs in Hereditary Hemorrhagic Telangiectasia
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    Chapter 27 A Genetic Analysis for Patients with Pulmonary Arterial Hypertension
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    Chapter 28 Evaluation and Visualization of the Right Ventricle Using Three-Dimensional Echocardiography
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    Chapter 29 Pulmonary Hypertension Associated with Postoperative Tetralogy of Fallot
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    Chapter 30 Microscopic Lung Airway Abnormality and Pulmonary Vascular Disease Associated with Congenital Systemic-to-Pulmonary Shunt
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    Chapter 31 Respiratory Syncytial Virus Infection in Infants with Heart and Lung Diseases
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    Chapter 32 Perspective for Part III
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    Chapter 33 The Ductus Arteriosus, a Vascular Outsider, in Relation to the Pulmonary Circulation
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    Chapter 34 Molecular, Genetic, and Pharmacological Modulation of the Ductus Arteriosus: KATP Channels as Novel Drug Targets
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    Chapter 35 New Mediators in the Biology of the Ductus Arteriosus: Lessons from the Chicken Embryo
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    Chapter 36 Constriction of the Ductus Arteriosus with KATP Channel Inhibitors
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    Chapter 37 New Insights on How to Treat Patent Ductus Arteriosus
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    Chapter 38 Antenatal Administration of Betamethasone Contributes to Intimal Thickening of the Ductus Arteriosus
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    Chapter 39 Prostaglandin E-EP4-Mediated Fibulin-1 Up-regulation Plays a Role in Intimal Thickening of the Ductus Arteriosus
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    Chapter 40 Transcriptional Profiles in the Chicken Ductus Arteriosus During Hatching
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    Chapter 41 Inhibition of Cyclooxygenase Contracts Chicken Ductus Arteriosus
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    Chapter 42 Prostaglandin E2 Receptor EP4 Inhibition Constricts the Rat Ductus Arteriosus
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    Chapter 43 Dilatation of the Ductus Arteriosus by Diazoxide in Fetal and Neonatal Rats
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    Chapter 44 The Effect of Long-term Administration of Prostaglandin E1 on Morphological Changes in Ductus Arteriosus
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    Chapter 45 Significance of SGK1 as a Protein Kinase Transcriptionally Regulated by ALK1 Signaling in Vascular Endothelial Cells
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    Chapter 46 Fabrication of Implantable Human Arterial Graft by Periodic Hydrostatic Pressure
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    Chapter 47 Optimum Preparation of Candida albicans Cell Wall Extra (CAWE) for the Mouse Model of Kawasaki Disease
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    Chapter 48 Perspective for Part IV
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    Chapter 49 Advances in the Second Heart Field
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    Chapter 50 Novel Cardiac Progenitors for All Components of the Heart Except for the Right Ventricle
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    Chapter 52 The Endocardium as a Master Regulator of Ventricular Trabeculation
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    Chapter 54 Progress in the Generation of Multiple Lineage Human-iPSC-Derived 3D-Engineered Cardiac Tissues for Cardiac Repair
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    Chapter 55 Quantification of Contractility in Stem Cell-Derived Cardiomyocytes
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    Chapter 56 A Neurotrophic Factor Receptor GFRA2, a Specific Surface Antigen for Cardiac Progenitor Cells, Regulates the Process of Myocardial Compaction
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    Chapter 57 Cardiac Cell Specification by Defined Factors
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    Chapter 58 A Temporo-Spatial Regulation of Sema3c Is Essential for Interaction of Progenitor Cells during Cardiac Outflow Tract Development
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    Chapter 59 Spatiotemporally Restricted Developmental Alterations in the Anterior and Secondary Heart Fields Cause Distinct Conotruncal Heart Defects
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    Chapter 60 Significance of Transcription Factors in the Mechanisms of Great Artery Malformations
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    Chapter 62 Establishment of Induced Pluripotent Stem Cells from Immortalized B Cell Lines and Their Differentiation into Cardiomyocytes
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    Chapter 63 Establishment of an In Vitro LQT3 model Using Induced Pluripotent Stem Cells from LQT3 Patient-Derived Cardiomyocytes
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    Chapter 64 Genetic Assessments for Clinical Courses of Left Ventricle Noncompaction
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    Chapter 65 Elucidating the Pathogenesis of Congenital Heart Disease in the Era of Next-Generation Sequencing
Attention for Chapter 19: Dysfunction and Restoration of Endothelial Cell Communications in Pulmonary Arterial Hypertension: Therapeutic Implications
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Chapter title
Dysfunction and Restoration of Endothelial Cell Communications in Pulmonary Arterial Hypertension: Therapeutic Implications
Chapter number 19
Book title
Molecular Mechanism of Congenital Heart Disease and Pulmonary Hypertension
Published by
Springer, Singapore, January 2020
DOI 10.1007/978-981-15-1185-1_19
Book ISBNs
978-9-81-151184-4, 978-9-81-151185-1

Christophe Guignabert

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