Fr. 199.00

Sustainable Nanocomposites with Green Biomaterials

English · Hardback

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Description

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The book delves into the realm of biomaterials with a strong focus on sustainability, offering insights into their diverse applications in advanced therapeutics, and, diagnostics. Tackling cutting-edge topics, it explores the latest developments in green biomaterials for biomedical implants and tissue engineering, emphasizing sustainability in nanocomposite synthesis, properties, and applications. The book also addresses the groundbreaking concept of biodegradable and biofriendly transient devices for sustainable monitoring and healing. Further, it highlights the crucial role of biodegradable scaffolds in engineering living tissues and discusses gene-activated matrices for tissue engineering and regenerative medicine. Various chapters delve into specialized applications, such as tissue-engineered cartilage products, green biomaterials for innovative drug delivery, and 3D printed biodegradable metals in orthopedics and stomatology. The book also explores the use of bioresorbable polymers in advancing minimally invasive surgical procedures and customizing medical devices for personalized medicine. Additionally, it sheds light on the integration of nanobioengineered platforms in electrochemical biosensors for disease diagnosis, antimicrobial biomaterials in dental healthcare, silk-based biomaterials for regenerative medicine and drug delivery, and the utilization of plant-derived biomaterials in cardiac tissue repair. This comprehensive volume not only provides a snapshot of the latest advancements in the field but also underscores the pivotal role of green biomaterials in shaping the future of healthcare technologies.

List of contents

Chapter 1. Bioinspired green biomaterials for advanced therapeutics, diagnostics and biosensors.- Chapter 2. Sustainable nanocomposites with green biomaterials: Synthesis, properties, and applications.- Chapter 3. Biomaterials for Tissue Engineered Cartilage Product for Orthopedic  (osteoarthritis) Reconstruction .- Chapter 4. Bioresorbable Polymeric Scaffold: Advancing minimally invasive surgical procedure for Cardiovascular and its applications.- Chapter 5Plant-derived biomaterial and their use in cardiac tissue repair.- Chapter 6. Conductive Polymers and Hydrogels for Brain-Computer Interfaces.- Chapter 7. Green biopolymers as carriers for innovative drug delivery.- Chapter 8. Selective bioadsorption of gold and platinum by varying the amount of dead biomass of aspergillus niger in binary aqueous systems.- Chapter 9. Terpenes: Nature's Plasticizers for Sustainable Biopolymer Enhancement.- Chapter 10. Tailore-made sustainable nanocomposites for injection moulding and fused granulate fabrication.- Chapter 11. Advancing Eco-Friendly Biomedicine: Sustainable Nanocomposites as Platforms for Genetic Vaccines.- Chapter 12. Biodegradable materials for customized medical devices improve personalized medicine.- Chapter 13. Antimicrobial Biomaterial for Dental Healthcare Application.- Chapter 14. Recent Trends in Polyhydroxyalkanoates: Bridging the Gap Between Bench and Bedside.- Chapter 15. Attractive potential of alginate-based oil-in-water emulsion Liquid Marbles for the promising carrier of the controlled release of limonene.- Chapter 16. Suitability of 3D-printed cellulose-based polymer materials for electrical insulation applications.- Chapter 17. Advances in Green Biomaterials for Biomedical Implants and Tissue Engineering.

About the author

Dr. Rishabha Malviya completed B. Pharmacy from Uttar Pradesh Technical University and M. Pharmacy (Pharmaceutics) from Gautam Buddha Technical University, Lucknow Uttar Pradesh. His PhD (Pharmacy) work was in the area of Novel formulation development techniques. He has 13 years of research experience and presently working as Associate Professor in the Department of Pharmacy, School of Medical and Allied Sciences, Galgotias University since past 8 years. His area of interest includes formulation optimization, nanoformulation, targeted drug delivery, localized drug delivery and characterization of natural polymers as pharmaceutical excipients. He has authored more than 200 research/review papers for national/international journals of repute. He has 58 patents (19 grants, 38 published, 1 filed) and publications in reputed National and International journals with total of 300 cumulative impact factor. He has also received an Outstanding Reviewer award from Elsevier. He has authored/edited/editing 58 books (Wiley, CRC Press/Taylor and Francis, Springer, IOP Publishing, River Publisher, Apple academic Press/Taylor and Francis Groups and OMICS publication) and authored 165 book chapters. His name has included in word’s top 2% scientist list for the year 2020, 2021, 2022 and 2023 by Elsevier BV and Stanford University. He is Reviewer/Editor/Editorial board member of more than 50 national and international journals of repute. He has invited as author for “Atlas of Science” and pharma magazine dealing with industry (B2B) “Ingredient south Asia Magazines”.
 
Sonali Sundram completed B. Pharm & M. Pharm (pharmacology) from AKTU, Lucknow. She has worked as research scientist in project of ICMR in King George's Medical University, Lucknow after that she hasjoined BBDNIIT and currently she is working in Galgotias university, Greater Noida. Her PhD (Pharmacy) work was in the area of Neurodegeneration and Nanoformulation. Her area of interest is neurodegeneration, clinical research, artificial intelligence. She has authored/edited/editing more than 35 books (Wiley, CRC Press/Taylor and Francis, River Publisher, IOP Publishing, Apple academic press etc.) She has attended as well organized more than 15 national and international seminar/conferences/workshop. She has more than 8 patents national and international in her credit.

Summary

The book delves into the realm of biomaterials with a strong focus on sustainability, offering insights into their diverse applications in advanced therapeutics, and, diagnostics. Tackling cutting-edge topics, it explores the latest developments in green biomaterials for biomedical implants and tissue engineering, emphasizing sustainability in nanocomposite synthesis, properties, and applications. The book also addresses the groundbreaking concept of biodegradable and biofriendly transient devices for sustainable monitoring and healing. Further, it highlights the crucial role of biodegradable scaffolds in engineering living tissues and discusses gene-activated matrices for tissue engineering and regenerative medicine. Various chapters delve into specialized applications, such as tissue-engineered cartilage products, green biomaterials for innovative drug delivery, and 3D printed biodegradable metals in orthopedics and stomatology. The book also explores the use of bioresorbable polymers in advancing minimally invasive surgical procedures and customizing medical devices for personalized medicine. Additionally, it sheds light on the integration of nanobioengineered platforms in electrochemical biosensors for disease diagnosis, antimicrobial biomaterials in dental healthcare, silk-based biomaterials for regenerative medicine and drug delivery, and the utilization of plant-derived biomaterials in cardiac tissue repair. This comprehensive volume not only provides a snapshot of the latest advancements in the field but also underscores the pivotal role of green biomaterials in shaping the future of healthcare technologies.

Product details

Assisted by Rishabha Malviya (Editor), Sundram (Editor), Sonali Sundram (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 13.04.2025
 
EAN 9783031791093
ISBN 978-3-0-3179109-3
No. of pages 507
Dimensions 155 mm x 31 mm x 235 mm
Weight 883 g
Illustrations XII, 507 p. 149 illus., 133 illus. in color.
Series Biomaterials, Bioengineering and Sustainability
Subjects Natural sciences, medicine, IT, technology > Medicine > Non-clinical medicine

Nachhaltigkeit, Biotechnologie, Sustainability, Orthopädie und Brüche, Regenerative Medizin, ZAHNHEILKUNDE, Technische Anwendung von Biomaterialien, dentistry, Orthopaedics, Biomedical Research, Regenerative Medicine and Tissue Engineering, Biomaterials, Nanomaterials, Personalized medicine, drug delivery, Biocompatible Material, green biopolymer, sustainable biomaterials, Antimicrobial biomaterial

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