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Cardiac Regeneration
  • Language: en
  • Pages: 153

Cardiac Regeneration

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Stem Cells and Cardiac Regeneration
  • Language: en
  • Pages: 219

Stem Cells and Cardiac Regeneration

  • Type: Book
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  • Published: 2015-12-18
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  • Publisher: Springer

This book provides an update of recent advances in the basic and clinical applications of cell-based therapies for myocardial repair and regeneration in ischemic heart disease (IHD) and heart failure (HF). The first sections of the book illuminate basic aspects of stem cells such as definitions, isolation criteria and characterization of embryonic and adult stem cells, as well as pluripotent stem cells and tissue specific progenitor and stem cells. In the following section, the text examines the role of critical regulators of stem cell differentiation in myocardial regeneration, that include circadian rhythyms, microRNAs, epigenetics, microvescicles, and exosomes. The text concludes with a review of the use of stem/progenitor cells in cardiac regeneration and discuss current controversies, unresolved issues, challenges, and future directions. Stem Cells and Cardiac Regeneration is addressed to a wide audience consisting of cardiologists, clinicians, and research scientists, who will learn new concepts in cardiovascular regeneration and repair with special focus on molecular mechanisms and therapeutic potential for cardiovascular regeneration.

Regulation of Tissue Responses: The TWEAK/Fn14 Pathway and other TNF/ TNFR Superfamily Members that Activate Noncanonical NFkB Signaling
  • Language: en
  • Pages: 203

Regulation of Tissue Responses: The TWEAK/Fn14 Pathway and other TNF/ TNFR Superfamily Members that Activate Noncanonical NFkB Signaling

The immune system mediates tissue responses under both physiological and pathological conditions, impacting the inflammatory, fibrogenic and regenerative components. In addition to various leukocyte subsets, it is now recognized that epithelial, endothelial and other non-hematopoietic tissue cell types actively contribute to the interplay shaping tissue responses. Further understanding the molecular pathways and mechanisms mediating these tissue responses is of great interest. In the past decade, TNF-like weak inducer of apoptosis (TWEAK) and its receptor, FGF-inducible molecule-14 (Fn14), members of the TNF/TNFR superfamily, have emerged as a prominent molecular axis regulating tissue respo...

Heart Regeneration
  • Language: en
  • Pages: 393

Heart Regeneration

This title presents the major advances of the last decade in the field of cardiac regeneration.

Reviews of Physiology, Biochemistry and Pharmacology, Vol. 165
  • Language: en
  • Pages: 101

Reviews of Physiology, Biochemistry and Pharmacology, Vol. 165

T. Büch, E. Schäfer, D. Steinritz, A. Dietrich, T. Gudermann: Chemosensory TRP Channels in the Respiratory Tract: Role in Toxic Lung Injury and Potential as "Sweet Spots" for Targeted Therapies. D.C. Zebrowski and F. B. Engel: The Cardiomyocyte Cell Cycle in Hypertrophy, Tissue Homeostasis, and Regeneration. P. Hegyi and O.H. Petersen: The Exocrine Pancreas: The Acinar -Ductal Tango in Physiology and Pathophysiology.

Advanced Therapies for Cardiac Regeneration
  • Language: en
  • Pages: 324

Advanced Therapies for Cardiac Regeneration

The Research Topic is organized in the framework of the project BIORECAR (grant number: 772168; http://www.biorecar.polito.it/index.html)

PPARs in Cellular and Whole Body Energy Metabolism
  • Language: en
  • Pages: 583

PPARs in Cellular and Whole Body Energy Metabolism

  • Type: Book
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  • Published: 2019-01-09
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  • Publisher: MDPI

This book is a printed edition of the Special Issue "PPARs in Cellular and Whole Body Energy Metabolism" that was published in IJMS

Macrophage Plasticity in Sterile and Pathogen-Induced Inflammation
  • Language: en
  • Pages: 245
Adhesion G Protein-coupled Receptors
  • Language: en
  • Pages: 409

Adhesion G Protein-coupled Receptors

  • Type: Book
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  • Published: 2016-11-09
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  • Publisher: Springer

Latest research on Adhesion GPCRs has unearthed surprising revelations about the events that govern the signal transduction of these receptor molecules and the cellular and organ requirements for these signals. Unexpected and unprecedented findings suggest that Adhesion GPCRs constitute a group of receptors that sense mechanical stimuli and transcode them into metabotropic signals through the action of a novel activation paradigm. Interdisciplinary efforts transcending many areas of biomedical research including pharmacology, physiology, genetics, cell biology, structural biology, biochemistry and bioinformatics were necessary to unveil these fundamental properties. The scientific leaders in the field that carried this research effort have teamed up here to provide a comprehensive overview of our current understanding, how Adhesion GPCRs signal and how these receptors shape organ structure and function.