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Biosynthetic Polymers for Medical Applications: Woodhead Publishing Series in Biomaterials

Editat de Laura Poole-Warren, Penny Martens, Rylie Green
en Limba Engleză Hardback – 24 noi 2015
Biosynthetic Polymers for Medical Applications provides the latest information on biopolymers, the polymers that have been produced from living organisms and are biodegradable in nature. These advanced materials are becoming increasingly important for medical applications due to their favorable properties, such as degradability and biocompatibility.
This important book provides readers with a thorough review of the fundamentals of biosynthetic polymers and their applications. Part One covers the fundamentals of biosynthetic polymers for medical applications, while Part Two explores biosynthetic polymer coatings and surface modification. Subsequent sections discuss biosynthetic polymers for tissue engineering applications and how to conduct polymers for medical applications.


  • Comprehensively covers all major medical applications of biosynthetic polymers
  • Provides an overview of non-degradable and biodegradable biosynthetic polymers and their medical uses
  • Presents a specific focus on coatings and surface modifications, biosynthetic hydrogels, particulate systems for gene and drug delivery, and conjugated conducting polymers
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Specificații

ISBN-13: 9781782421054
ISBN-10: 178242105X
Pagini: 358
Dimensiuni: 152 x 229 x 25 mm
Greutate: 0.75 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials


Public țintă

Biomaterials and chemical scientists in R&D and academia; in addition to polymer scientists, it should appeal to researchers concerned with tissue engineering, drug delivery and conducting materials

Cuprins

1. Introduction to biomedical polymers and biocompatibility
2. Non-degradable polymers for Biomedical applications
3. Biodegradable/Bioerodible polymers for medical applications
4. Bio-inspired antimicrobial polymers
5. Plasma modifications for direct cell growth and response
6. Stent coatings for blood compatibility
7. Degradable hydrogel systems
8. Hydrogels and angiogenesis
9. Engineering biosynthetic encapsulation systems
10. Conducting Biosynthetic Polymers as Biomaterials
11. Conducting polymers for neural interface applications
12. Degradable Conjugated conducting Polymers and Nerve Guidance