The Resource Composite synthetic scaffolds for tissue engineering and regenerative medicine, Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim

Composite synthetic scaffolds for tissue engineering and regenerative medicine, Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim

Label
Composite synthetic scaffolds for tissue engineering and regenerative medicine
Title
Composite synthetic scaffolds for tissue engineering and regenerative medicine
Statement of responsibility
Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim
Creator
Contributor
Author
Subject
Genre
Language
eng
Summary
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 structu
Member of
Cataloging source
GW5XE
http://library.link/vocab/creatorName
Sultana, Naznin
Dewey number
612/.028
Illustrations
illustrations
Index
no index present
LC call number
R857.T55
LC item number
.S85 2015eb
Literary form
non fiction
Nature of contents
  • dictionaries
  • bibliography
NLM call number
QT 37
http://library.link/vocab/relatedWorkOrContributorName
  • Hassan, Mohd Izzat
  • Lim, Mim Mim
Series statement
SpringerBriefs in Materials,
http://library.link/vocab/subjectName
  • Tissue scaffolds
  • Regenerative medicine
  • MEDICAL
  • SCIENCE
  • Regenerative medicine
  • Tissue scaffolds
  • Tissue Engineering
  • Tissue Scaffolds
  • Polymers
  • Nanofibers
  • Biomedical engineering
  • Cellular biology (cytology)
  • Materials science
Label
Composite synthetic scaffolds for tissue engineering and regenerative medicine, Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim
Link
https://ezproxy.lib.ou.edu/login?url=http://link.springer.com/10.1007/978-3-319-09755-8
Instantiates
Publication
Copyright
Antecedent source
unknown
Bibliography note
Includes bibliographical references
Carrier category
online resource
Carrier category code
  • cr
Carrier MARC source
rdacarrier
Color
multicolored
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
  • Preface; Contents; Notations; 1 Scaffolding Biomaterials; Abstract; 1.1 Introduction; 1.2 Biomaterials; 1.2.1 Biopolymers; 1.2.2 Bioceramics; 1.2.3 Polycaprolactone (PCL); 1.2.4 Poly(ortho esters) and Poly(anhydrides); 1.2.5 Poly(glycolic acid), Poly(lactic acid) and Their Copolymers; 1.2.6 Chitosan; 1.2.7 Gelatin; 1.2.8 Biodegradable Metals; 1.2.9 Biodegradable Polymer Blends; 1.2.10 Composites; References; 2 Scaffold Fabrication Protocols; Abstract; 2.1 Techniques of Producing Scaffolds; 2.1.1 Electrospinning; 2.1.2 Solvent Casting and Particulate Leaching; 2.1.3 Polymer Phase Separation
  • 2.1.4 Rapid Prototyping2.1.5 Melt Molding; 2.1.6 Gas Foaming; 2.2 Electrospinning Protocol; 2.2.1 Electrospinning Process and Principle; 2.2.2 Nozzle Configuration; 2.2.3 Solution Versus Melt Electrospinning; 2.3 Parameters in Electrospinning; 2.3.1 Processing Parameters; 2.3.1.1 Applied Voltage; 2.3.1.2 Flow Rate; 2.3.1.3 Capillary Tip to Collector Distance; 2.3.2 Solution Parameters; 2.3.2.1 Polymer Concentration; 2.3.2.2 Solvent Volatility; 2.3.2.3 Solution Conductivity; 2.4 In Vitro Degradation of Scaffolds; References
  • 3 Fabrication of Polymer and Composite Scaffolds Using Electrospinning TechniquesAbstract; 3.1 Fabrication of Poly(Caprolactone) Nano-fibrous Scaffolds Using Electrospinning Technique; 3.1.1 Conclusions; 3.2 Fabrication of Electrospun Hydroxyapatite/Polycaprolactone Scaffolds; 3.2.1 Conclusions; Acknowledgment; References; 4 Fabrication and Characterization of Polymer and Composite Scaffolds Using Freeze-Drying Technique; Abstract; 4.1 Hydroxyapatite/Chitosan Scaffolds Using Freeze-Drying Technique; 4.2 HA/PCL Composite Scaffolds Using Freeze-Drying Technique; 4.3 Conclusions; Acknowledgments
Dimensions
unknown
Extent
1 online resource (x, 61 pages)
File format
unknown
Form of item
online
Isbn
9783319097558
Level of compression
unknown
Media category
computer
Media MARC source
rdamedia
Media type code
  • c
Note
SpringerLink
Other control number
10.1007/978-3-319-09755-8
Other physical details
illustrations (some color).
Quality assurance targets
not applicable
Reformatting quality
unknown
Sound
unknown sound
Specific material designation
remote
System control number
  • (OCoLC)894247354
  • (OCoLC)ocn894247354
Label
Composite synthetic scaffolds for tissue engineering and regenerative medicine, Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim
Link
https://ezproxy.lib.ou.edu/login?url=http://link.springer.com/10.1007/978-3-319-09755-8
Publication
Copyright
Antecedent source
unknown
Bibliography note
Includes bibliographical references
Carrier category
online resource
Carrier category code
  • cr
Carrier MARC source
rdacarrier
Color
multicolored
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
  • Preface; Contents; Notations; 1 Scaffolding Biomaterials; Abstract; 1.1 Introduction; 1.2 Biomaterials; 1.2.1 Biopolymers; 1.2.2 Bioceramics; 1.2.3 Polycaprolactone (PCL); 1.2.4 Poly(ortho esters) and Poly(anhydrides); 1.2.5 Poly(glycolic acid), Poly(lactic acid) and Their Copolymers; 1.2.6 Chitosan; 1.2.7 Gelatin; 1.2.8 Biodegradable Metals; 1.2.9 Biodegradable Polymer Blends; 1.2.10 Composites; References; 2 Scaffold Fabrication Protocols; Abstract; 2.1 Techniques of Producing Scaffolds; 2.1.1 Electrospinning; 2.1.2 Solvent Casting and Particulate Leaching; 2.1.3 Polymer Phase Separation
  • 2.1.4 Rapid Prototyping2.1.5 Melt Molding; 2.1.6 Gas Foaming; 2.2 Electrospinning Protocol; 2.2.1 Electrospinning Process and Principle; 2.2.2 Nozzle Configuration; 2.2.3 Solution Versus Melt Electrospinning; 2.3 Parameters in Electrospinning; 2.3.1 Processing Parameters; 2.3.1.1 Applied Voltage; 2.3.1.2 Flow Rate; 2.3.1.3 Capillary Tip to Collector Distance; 2.3.2 Solution Parameters; 2.3.2.1 Polymer Concentration; 2.3.2.2 Solvent Volatility; 2.3.2.3 Solution Conductivity; 2.4 In Vitro Degradation of Scaffolds; References
  • 3 Fabrication of Polymer and Composite Scaffolds Using Electrospinning TechniquesAbstract; 3.1 Fabrication of Poly(Caprolactone) Nano-fibrous Scaffolds Using Electrospinning Technique; 3.1.1 Conclusions; 3.2 Fabrication of Electrospun Hydroxyapatite/Polycaprolactone Scaffolds; 3.2.1 Conclusions; Acknowledgment; References; 4 Fabrication and Characterization of Polymer and Composite Scaffolds Using Freeze-Drying Technique; Abstract; 4.1 Hydroxyapatite/Chitosan Scaffolds Using Freeze-Drying Technique; 4.2 HA/PCL Composite Scaffolds Using Freeze-Drying Technique; 4.3 Conclusions; Acknowledgments
Dimensions
unknown
Extent
1 online resource (x, 61 pages)
File format
unknown
Form of item
online
Isbn
9783319097558
Level of compression
unknown
Media category
computer
Media MARC source
rdamedia
Media type code
  • c
Note
SpringerLink
Other control number
10.1007/978-3-319-09755-8
Other physical details
illustrations (some color).
Quality assurance targets
not applicable
Reformatting quality
unknown
Sound
unknown sound
Specific material designation
remote
System control number
  • (OCoLC)894247354
  • (OCoLC)ocn894247354

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