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Tissue Engineering Strategies for Organ Regeneration addresses the
existing and future trends of tissue engineering approaches for
organ/tissue regeneration or repair. This book provides a
comprehensive summary of the recent improvement of biomaterials
used in scaffold-based tissue engineering, and the tools and
different protocols needed to design tissues and organs. The
chapters in this book provide the in-depth principles for many of
the supporting and enabling technologies including the applications
of BioMEMS devices in tissue engineering, and the combination of
organoid formation and three dimensional (3D) bioprinting. The book
also highlights the advances and strategies for regeneration of
three-dimensional microtissues in microcapsules, tissue
reconstruction techniques, and injectable composite scaffolds for
bone tissue repair and augmentation. Key Features: Addresses the
current obstacles to tissue engineering applications Provides the
latest improvements in the field of integrated biomaterials and
fabrication techniques for scaffold-based tissue engineering Shows
the influence of microenvironment towards cell-biomaterials
interactions Highlights significant and recent improvements of
tissue engineering applications for the artificial organ and tissue
generation Describes the applications of microelectronic devices in
tissue engineering Describes different current bioprinting
technologies
This book addresses the principles, methods and applications of
biodegradable polymer based scaffolds for bone tissue engineering.
The general principle of bone tissue engineering is reviewed and
the traditional and novel scaffolding materials, their properties
and scaffold fabrication techniques are explored. By acting as
temporary synthetic extracellular matrices for cell accommodation,
proliferation, and differentiation, scaffolds play a pivotal role
in tissue engineering. This book does not only provide the
comprehensive summary of the current trends in scaffolding design
but also presents the new trends and directions for scaffold
development for the ever expanding tissue engineering applications.
Tissue Engineering Strategies for Organ Regeneration addresses the
existing and future trends of tissue engineering approaches for
organ/tissue regeneration or repair. This book provides a
comprehensive summary of the recent improvement of biomaterials
used in scaffold-based tissue engineering, and the tools and
different protocols needed to design tissues and organs. The
chapters in this book provide the in-depth principles for many of
the supporting and enabling technologies including the applications
of BioMEMS devices in tissue engineering, and the combination of
organoid formation and three dimensional (3D) bioprinting. The book
also highlights the advances and strategies for regeneration of
three-dimensional microtissues in microcapsules, tissue
reconstruction techniques, and injectable composite scaffolds for
bone tissue repair and augmentation. Key Features: Addresses the
current obstacles to tissue engineering applications Provides the
latest improvements in the field of integrated biomaterials and
fabrication techniques for scaffold-based tissue engineering Shows
the influence of microenvironment towards cell-biomaterials
interactions Highlights significant and recent improvements of
tissue engineering applications for the artificial organ and tissue
generation Describes the applications of microelectronic devices in
tissue engineering Describes different current bioprinting
technologies
This book addresses important biomaterials which are commonly used
to fabricate scaffolds and it describes two major protocols
employed in scaffold fabrication. Tissue engineering or
regenerative medicine aims at restoring ex-novo tissues and organs
whose functionality has been compromised as a consequence of
diseases or traumatic events. The innovative concept underlying
tissue engineering is the use of autologous cells, obtained from a
biopsy of the patient. Cells are seeded on a porous scaffold which
has the role of supporting and guiding cells towards the
development of tissue-like structures as well as providing a
platform for the delivery under controlled condition of growth
factor release, etc. The successful manufacture of scaffolds for
tissue engineering applications is crucial. In this book, these
biomaterials are discussed. The book also covers illustrated
examples, structure and properties of scaffolds, cellular
interactions and drug delivery.
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