Biomedical Materials and Biofabrication for Regenerative Medicine
Herausgeber: Sultana, Naznin; Soon, Chin Fhong; Bandyopadhyay-Ghosh, Sanchita
Biomedical Materials and Biofabrication for Regenerative Medicine
Herausgeber: Sultana, Naznin; Soon, Chin Fhong; Bandyopadhyay-Ghosh, Sanchita
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'Biomedical Materials and Biofabrication for Regenerative Medicine' addresses the existing and future trends of tissue engineering approaches for regenerating various organs/tissues.
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'Biomedical Materials and Biofabrication for Regenerative Medicine' addresses the existing and future trends of tissue engineering approaches for regenerating various organs/tissues.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- Seitenzahl: 248
- Erscheinungstermin: 26. Juni 2025
- Englisch
- Abmessung: 240mm x 161mm x 18mm
- Gewicht: 540g
- ISBN-13: 9781032594231
- ISBN-10: 1032594233
- Artikelnr.: 73390813
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: CRC Press
- Seitenzahl: 248
- Erscheinungstermin: 26. Juni 2025
- Englisch
- Abmessung: 240mm x 161mm x 18mm
- Gewicht: 540g
- ISBN-13: 9781032594231
- ISBN-10: 1032594233
- Artikelnr.: 73390813
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Dr. Naznin Sultana earned her PhD in Biomedical Engineering from the University of Hong Kong and currently serves as a Clinical Associate Professor at Prairie View A&M University in Texas, USA. Her publication record includes over 80 peer-reviewed indexed technical research papers, three books, two edited books, and several book chapters. Dr. Sultana has established collaborations with academicians from other institutions and countries and is a member of the editorial board of two international journals. Dr. Sanchita Bandyopadhyay-Ghosh obtained her PhD from the University of Sheffield, UK. Before joining Sheffield, she was awarded Pre-doctoral ellowship from K. U. Leuven, Belgium. Following her PhD, she worked as a Teaching Research Fellow at Alfred University, USA. She later joined the niversity of Toronto, Canada, as a Post Doctoral Fellow. She is currently orking as a Professor at Manipal University Jaipur, India. Dr. Sanchita Bandyopadhyay-Ghosh is proactively engaged in developing bionanocomposite, injectable, and 3D-printed bone scaffolds with several patents and high-impact publications to her credit. Dr. Chin Fhong Soon earned her PhD in Molecular and Biomedical Engineering from the University of Bradford, UK. Currently, she serves as a Professor at Universiti Tun Hussein Onn Malaysia. With over 23 years of academic and research experience, she has authored and edited several books and high impact journal articles in biomedical engineering, cell and tissue engineering, and nano-biotechnology. She is currently an Associate Editor of the Biomedical Engineering Online Journal and Journal of Sustainability Science and Management.
Preface. 1. Overview on the Biomaterials for Regenerative Medicine. 2.
Polymers and Composites in 3D Bioprinting for Regenerative Medicine. 3.
Natural Polymers for Fabrication of Tissue Engineering Scaffold. 4.
Bioprinting the Bone. 5. Biofabrication of Poly(Hydroxybutyrate-co
-Hydroxyvalerate)/Poly(Lactic-co-Glycolic Acid) Electrospun Nanofibers as
the Mediation of Strontium-Hydroxyapatite for Bone Tissue Engineering. 6.
The Development and Application of Extrusion-based 3D Bioprinting. 7. Cell
Adhesion and Proliferation of Silica Nanocomposite. 8. 3D Bioprinting of
Phenotypically Stable Articular Cartilage. 9. Biodegradation Behaviour of
Bioactive Gallium Based Nanosilver Doped Alloy in Simulated Body Fluid. 10.
Characterizing Physicochemical Properties of Alginate-Gelatin-Cholesteryl
Ester Liquid Crystals Scaffold for Microtissue Regeneration. Index.
Polymers and Composites in 3D Bioprinting for Regenerative Medicine. 3.
Natural Polymers for Fabrication of Tissue Engineering Scaffold. 4.
Bioprinting the Bone. 5. Biofabrication of Poly(Hydroxybutyrate-co
-Hydroxyvalerate)/Poly(Lactic-co-Glycolic Acid) Electrospun Nanofibers as
the Mediation of Strontium-Hydroxyapatite for Bone Tissue Engineering. 6.
The Development and Application of Extrusion-based 3D Bioprinting. 7. Cell
Adhesion and Proliferation of Silica Nanocomposite. 8. 3D Bioprinting of
Phenotypically Stable Articular Cartilage. 9. Biodegradation Behaviour of
Bioactive Gallium Based Nanosilver Doped Alloy in Simulated Body Fluid. 10.
Characterizing Physicochemical Properties of Alginate-Gelatin-Cholesteryl
Ester Liquid Crystals Scaffold for Microtissue Regeneration. Index.
Preface. 1. Overview on the Biomaterials for Regenerative Medicine. 2.
Polymers and Composites in 3D Bioprinting for Regenerative Medicine. 3.
Natural Polymers for Fabrication of Tissue Engineering Scaffold. 4.
Bioprinting the Bone. 5. Biofabrication of Poly(Hydroxybutyrate-co
-Hydroxyvalerate)/Poly(Lactic-co-Glycolic Acid) Electrospun Nanofibers as
the Mediation of Strontium-Hydroxyapatite for Bone Tissue Engineering. 6.
The Development and Application of Extrusion-based 3D Bioprinting. 7. Cell
Adhesion and Proliferation of Silica Nanocomposite. 8. 3D Bioprinting of
Phenotypically Stable Articular Cartilage. 9. Biodegradation Behaviour of
Bioactive Gallium Based Nanosilver Doped Alloy in Simulated Body Fluid. 10.
Characterizing Physicochemical Properties of Alginate-Gelatin-Cholesteryl
Ester Liquid Crystals Scaffold for Microtissue Regeneration. Index.
Polymers and Composites in 3D Bioprinting for Regenerative Medicine. 3.
Natural Polymers for Fabrication of Tissue Engineering Scaffold. 4.
Bioprinting the Bone. 5. Biofabrication of Poly(Hydroxybutyrate-co
-Hydroxyvalerate)/Poly(Lactic-co-Glycolic Acid) Electrospun Nanofibers as
the Mediation of Strontium-Hydroxyapatite for Bone Tissue Engineering. 6.
The Development and Application of Extrusion-based 3D Bioprinting. 7. Cell
Adhesion and Proliferation of Silica Nanocomposite. 8. 3D Bioprinting of
Phenotypically Stable Articular Cartilage. 9. Biodegradation Behaviour of
Bioactive Gallium Based Nanosilver Doped Alloy in Simulated Body Fluid. 10.
Characterizing Physicochemical Properties of Alginate-Gelatin-Cholesteryl
Ester Liquid Crystals Scaffold for Microtissue Regeneration. Index.







