Nanobiomaterials in Hard Tissue Engineering. Applications of Nanobiomaterials Volume 4 1st Edition by Alexandru Mihai Grumezescu – Ebook PDF Instant Download/DeliveryISBN: 0323428620, 9780323428620
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Product details:
ISBN-10 : 0323428620
ISBN-13 : 9780323428620
Author: Alexandru Mihai Grumezescu
Nanobiomaterials in Hard Tissue Engineering covers the latest developments in the field of hard tissue engineering at the nanoscale. Leading researchers from around the world discuss the latest research and offer new insights.
This book presents data about the fabrication and characterization of nanobiomaterials involved in hard tissue reconstruction, describing recent progress and the advantages of both conventional and computer-aided methods. Recent applications of different classes of nanobiomaterials are discussed, with in vitro and in vivo applications also explained in detail. Special attention is paid to the applications of nanobiomaterials in bone regeneration and in the development of functional coatings for tailored implants to improve osseointegration. Finally, the book considers future challenges and perspectives.
Nanobiomaterials in Hard Tissue Engineering. Applications of Nanobiomaterials Volume 4 1st Table of contents:
Chapter 1. Nanobiomaterials in hard tissue engineering
Abstract
1.1 Introduction
1.2 Implants and Biomaterials in Tissue Engineering
1.3 Advances in Nanotechnology
1.4 Guided Bone Regeneration
1.5 Experiments
1.6 Prospects
1.7 Conclusions
References
Chapter 2. Applications of nanobiomaterials in hard tissue engineering
Abstract
2.1 Introduction and Background
2.2 Biomaterials in Hard Tissue Engineering
2.3 Nanofabrication Methods
2.4 Conclusions
References
Chapter 3. Emerging trends of nanobiomaterials in hard tissue engineering
Abstract
3.1 Introduction
3.2 Applications of Nanobiomaterials in Therapies
3.3 Conclusions
References
Further Reading
Chapter 4. Nanostructured materials as substrates for the adhesion, growth, and osteogenic differentiation of bone cells
Abstract
4.1 Introduction
4.2 Two-Dimensional Materials
4.3 Three-Dimensional Scaffolds
4.4 Conclusions and Further Perspectives
Acknowledgments
References
Chapter 5. Bone scaffolds: What’s new in nanoparticle drug delivery research?
Abstract
5.1 Introduction
5.2 Bone Scaffold
5.3 Nanotechnology Based Drug Delivery Systems in Bone Regeneration
5.4 Other Strategies Used in Bone Regeneration
5.5 Market Insights
5.6 Conclusions
References
Chapter 6. Nano-hydroxyapatite: Novel approaches in biomedical applications
Abstract
6.1 Introduction
6.2 HA Synthesis
6.3 HA in Bone Remodeling
6.4 HA-Based Scaffolds for Bone Reconstruction
6.5 Nanocomposites Based on HA
6.6 Functional Coatings Containing HA
6.7 In vivo Anticancer Activity of Different Forms of HA
6.8 Conclusions and Perspectives
Acknowledgements
References
Chapter 7. First principles study of the physical properties of pure and doped calcium phosphate biomaterial for tissue engineering
Abstract
7.1 Introduction
7.2 Early Use of Calcium Phosphate as a Biomaterial
7.3 Tricalcium Phosphate
7.4 Theoretical Investigations of Pure and Doped TCP
7.5 Hydroxyapatite
7.6 Theoretical Investigations of Pure and Doped HA
7.7 Enhancing Mechanical Properties of TCP and HA Materials for Clinical Applications
7.8 Doping TCP and HA Materials with Some Trace Elements
7.9 TCP in TE Technique
7.10 HA in TE Technique
7.11 Future Perspectives of Using Calcium Phosphate in the TE Area
7.12 Conclusions
References
Chapter 8. Nanostructured scaffold and its bioactive potentials in bone tissue engineering
Abstract
8.1 Introduction
8.2 The Properties of Ideal Scaffold Materials
8.3 The Conventional Scaffold Materials for Bone Tissue Engineering
8.4 The Characteristics of Nanobiomaterials
8.5 Applications of Nanostructured Scaffolds in Bone Tissue Engineering
8.6 Summary and Future Challenges
References
Chapter 9. Inorganic micro- and nanostructured implants for tissue engineering
Abstract
9.1 Introduction
9.2 Metals and Metallic Alloys Used for Hard Tissue Engineering
9.3 Ceramics Used as Biomaterials for Hard Tissue Engineering
9.4 Ceramic/Metal Structures
9.5 Coating Techniques
9.6 Conclusions
References
Chapter 10. Hydroxyapatite–silver nanobiomaterial
Abstract
10.1 Introduction
10.2 Silver-Substituted HA Nanoparticles
10.3 HA–Silver Nanocomposite
10.4 HA–Silver Coating
10.5 Conclusions
References
Chapter 11. Nanobiomaterials in periodontal tissue engineering
Abstract
11.1 Introduction
11.2 Polymer-Based Nanobiomaterials in Periodontal Tissue Engineering
11.3 Ceramic-Based Scaffolds in Periodontal Tissue Engineering
11.4 Conclusions
References
Chapter 12. Application of nanobioceramics in bone tissue engineering
Abstract
12.1 Introduction
12.2 Common Bioceramics Pertinent for BTE, Characteristic Features of Bioceramics, and Conventional Utilization Pattern
12.3 Bioceramics—Pharmaceuticals Applications
12.4 Conclusions and Future Perspectives
References
Chapter 13. Metallic nanosystems in hard tissue implants
Abstract
13.1 Introduction
13.2 Conventional Therapeutic Approaches in Hard Tissue Implants
13.3 Unconventional Therapeutic Approaches in Hard Tissue Implants
13.4 Conclusions
References
Chapter 14. Nanomaterials as scaffolds in bone tissue engineering in dental medicine
Abstract
14.1 Introduction
14.2 Tissue Engineering in Dentistry
14.3 Required Properties of Cell Carriers
14.4 Nanomaterial Scaffolds: Main Types and Design Strategies
14.5 Applications of Stem Cells in Tissue Engineering and Regenerative Dentistry
14.6 Effects of Nanomaterial Scaffolds on Bone Regeneration
14.7 Conclusions and Further Perspectives
References
Chapter 15. Magnetite nanoparticles for diagnostics and laser repair of cartilage
Abstract
Terms and Abbreviations
15.1 Introduction
15.2 Fabrication of Magnetite NPs
15.3 Characterization of Magnetite NPs
15.4 NPs Impregnation into Cartilage
15.5 Effect of NPs’ Impregnation on Cartilage Structure
15.6 Laser Heating of NP-Impregnated Cartilage
15.7 Conclusions
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Tags: Nanobiomaterials, Hard Tissue, Applications, Nanobiomaterials, Alexandru Mihai Grumezescu


