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Natural Based Polymers for Biomedical Applications

Natural Based Polymers for Biomedical Applications
  • Author : Rui L. Reis
  • Publsiher : Elsevier
  • Release : 15 August 2008
  • ISBN : 1845694813
  • Pages : 832 pages
  • Rating : 4/5 from 21 ratings
GET THIS BOOKNatural Based Polymers for Biomedical Applications

Summary:
Polymers from natural sources are particularly useful as biomaterials and in regenerative medicine, given their similarity to the extracellular matrix and other polymers in the human body. This important book reviews the wealth of research on both tried and promising new natural-based biomedical polymers, together with their applications as implantable biomaterials, controlled-release carriers or scaffolds for tissue engineering. The first part of the book reviews the sources, processing and properties of natural-based polymers for biomedical applications. Part two describes how the surfaces of polymer-based biomaterials can be modified to improve their functionality. The third part of the book discusses the use of natural-based polymers for biodegradable scaffolds and hydrogels in tissue engineering. Building on this foundation, Part four looks at the particular use of natural-gelling polymers for encapsulation, tissue engineering and regenerative medicine. The penultimate group of chapters reviews the use of natural-based polymers as delivery systems for drugs, hormones, enzymes and growth factors. The final part of the book summarises research on the key issue of biocompatibility. Natural-based polymers for biomedical applications is a standard reference for biomedical engineers, those studying and researching in this important area, and the medical community. Examines the sources, processing and properties of natural based polymers for biomedical applications Explains how the surfaces of polymer based biomaterials can be modified to improve their functionality Discusses the use of natural based polymers for hydrogels in tissue engineering, and in particular natural gelling polymers for encapsulation and regenerative medicine


Natural-Based Polymers for Biomedical Applications

Natural-Based Polymers for Biomedical Applications
  • Author : Rui L. Reis,Nuno M. Neves,Joao F. Mano,Manuela E. Gomes,Alexandra P. Marques,Helena S. Azevedo
  • Publisher : Elsevier
  • Release : 15 August 2008
GET THIS BOOKNatural-Based Polymers for Biomedical Applications

Polymers from natural sources are particularly useful as biomaterials and in regenerative medicine, given their similarity to the extracellular matrix and other polymers in the human body. This important book reviews the wealth of research on both tried and promising new natural-based biomedical polymers, together with their applications as implantable biomaterials, controlled-release carriers or scaffolds for tissue engineering. The first part of the book reviews the sources, processing and properties of natural-based polymers for biomedical applications. Part two describes how

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Natural-Based Polymers for Biomedical Applications

Natural-Based Polymers for Biomedical Applications
  • Author : Tatiana G. Volova,Yuri S. Vinnik,Ekaterina I. Shishatskaya,Nadejda M. Markelova,Gennady E. Zaikov
  • Publisher : CRC Press
  • Release : 21 April 2017
GET THIS BOOKNatural-Based Polymers for Biomedical Applications

This new book presents the authors’ biomedical studies of natural degradable biopolymers (polyhydroxyalkanoates [PHAs]) and discusses the demand for medical-grade materials and modern trends, focusing on the present status and future potential of PHAs. The authors present and summarize their most important results and findings obtained during the last few years in experimental studies and clinical trials of PHAs at the Institute of Biophysics Siberian Branch of Russian Academy of Science.

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Natural-based Polymers for Biomedical Applications

Natural-based Polymers for Biomedical Applications
  • Author : Rui L. Reis,Nuno M. Neves
  • Publisher : Woodhead Publishing Limited
  • Release : 27 October 2021
GET THIS BOOKNatural-based Polymers for Biomedical Applications

Natural origin biopolymers are attractive for use in biomedical applications, partly due to their biocompatibility and degradation characteristics. This book comprehensively reviews this important subject in six in-depth sections. Part one discusses the sources, properties, modification and processing of natural-based polymers, while the second section reviews surface aspects. Parts three and four cover natural-origin materials for tissue engineering and regenerative medicine, discussing scaffolds, hydrogels and injectable systems. The fifth part explains the sustained release of molecules. The final section goes

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Natural-based Polymers for Biomedical Applications

Natural-based Polymers for Biomedical Applications
  • Author : Tatiana G. Volova
  • Publisher : Apple Academic Press
  • Release : 27 October 2021
GET THIS BOOKNatural-based Polymers for Biomedical Applications

This new book presents the authors' biomedical studies of natural degradable biopolymers (polyhydroxyalkanoates [PHAs]) and discusses the demand for medical-grade materials and modern trends, focusing on the present status and future potential of PHAs. The authors present and summarize their most important results and findings obtained during the last few years in experimental studies and clinical trials of PHAs at the Institute of Biophysics Siberian Branch of Russian Academy of Science.

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Natural and Synthetic Biomedical Polymers

Natural and Synthetic Biomedical Polymers
  • Author : Sangamesh Kumbar,Cato Laurencin,Meng Deng
  • Publisher : Newnes
  • Release : 21 January 2014
GET THIS BOOKNatural and Synthetic Biomedical Polymers

Polymers are important and attractive biomaterials for researchers and clinical applications due to the ease of tailoring their chemical, physical and biological properties for target devices. Due to this versatility they are rapidly replacing other classes of biomaterials such as ceramics or metals. As a result, the demand for biomedical polymers has grown exponentially and supports a diverse and highly monetized research community. Currently worth $1.2bn in 2009 (up from $650m in 2000), biomedical polymers are expected to achieve a CAGR of 9.8%

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Nanostructured Polymer Composites for Biomedical Applications

Nanostructured Polymer Composites for Biomedical Applications
  • Author : Sarat Kumar Swain,Mohammad Jawaid
  • Publisher : Elsevier
  • Release : 15 June 2019
GET THIS BOOKNanostructured Polymer Composites for Biomedical Applications

Nanostructured Polymer Composites for Biomedical Applications addresses the challenges researchers face regarding the creation of nanostructured polymer composites that not only have superior performance and mechanical properties, but also have acceptable biological function. This book discusses current efforts to meet this challenge by discussing the multidisciplinary nature of nanostructured polymer composite biomaterials from various fields, including materials science, polymer science, biomedical engineering and biomedicine. This compilation of existing knowledge will lead to the generation of new terminology and definitions across

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Biomedical Hydrogels

Biomedical Hydrogels
  • Author : Steve Rimmer
  • Publisher : Elsevier
  • Release : 26 February 2011
GET THIS BOOKBiomedical Hydrogels

Hydrogels are very important for biomedical applications because they can be chemically manipulated to alter and control the hydrogel’s interaction with cells and tissues. Their flexibility and high water content is similar to that of natural tissue, making them extremely suitable for biomaterials applications. Biomedical hydrogels explores the diverse range and use of hydrogels, focusing on processing methods and novel applications in the field of implants and prostheses. Part one of this book concentrates on the processing of hydrogels,

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Hydrogels Based on Natural Polymers

Hydrogels Based on Natural Polymers
  • Author : Yu Chen
  • Publisher : Elsevier
  • Release : 23 October 2019
GET THIS BOOKHydrogels Based on Natural Polymers

Hydrogels Based on Natural Polymers presents the latest research on natural polymer-based hydrogels, covering fundamentals, preparation methods, synthetic pathways, advanced properties, major application areas, and novel characterization techniques. The advantages and disadvantages of each natural polymer-based hydrogel are also discussed, enabling preparation tactics for specific properties and applications. Sections cover fundamentals, development, characteristics, structures and properties. Additional chapters cover presentation methods and properties based on natural polymers, including physical and chemical properties, stimuli-responsive properties, self-healing properties, and biological properties. The

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Tailor-Made Polysaccharides in Biomedical Applications

Tailor-Made Polysaccharides in Biomedical Applications
  • Author : Amit Kumar Nayak,Md Saquib Hasnain,Tejraj M. Aminabhavi
  • Publisher : Academic Press
  • Release : 15 February 2021
GET THIS BOOKTailor-Made Polysaccharides in Biomedical Applications

Tailor-Made Polysaccharides in Biomedical Applications provides extensive details on all the vital precepts, basics, and fundamental aspects of tailored polysaccharides in the pharmaceutical and biotechnological industries. This information provides readers with the foundation for understanding and developing high-quality products. The utilization of natural polymeric excipients in numerous healthcare applications demands the replacement of the synthetic polymers with natural polymers. Natural polymers are superior in terms of biocompatibility, biodegradability, economic extraction, and ready availability. Natural polymers are especially useful in that

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Bioresorbable Polymers for Biomedical Applications

Bioresorbable Polymers for Biomedical Applications
  • Author : Giuseppe Perale,Jöns Hilborn
  • Publisher : Woodhead Publishing
  • Release : 24 August 2016
GET THIS BOOKBioresorbable Polymers for Biomedical Applications

Bioresorbable Polymers for Biomedical Applications: From Fundamentals to Translational Medicine provides readers with an overview of bioresorbable polymeric materials in the biomedical field. A useful resource for materials scientists in industry and academia, offering information on the fundamentals and considerations, synthesis and processing, and the clinical and R and D applications of bioresorbable polymers for biomedical applications. Focuses on biomedical applications of bioresorbable polymers Features a comprehensive range of topics including fundamentals, synthesis, processing, and applications Provides balanced coverage of

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Degradation Rate of Bioresorbable Materials

Degradation Rate of Bioresorbable Materials
  • Author : F J Buchanan
  • Publisher : Elsevier
  • Release : 26 September 2008
GET THIS BOOKDegradation Rate of Bioresorbable Materials

Bioresorbable materials are extensively used for a wide range of biomedical applications from drug delivery to fracture fixation, and may remain in the body for weeks, months or even years. Accurately predicting and evaluating the degradation rate of these materials is critical to their performance and the controlled release of bioactive agents. Degradation rate of bioresorbable materials provides a comprehensive review of the most important techniques in safely predicting and evaluating the degradation rate of polymer, ceramic and composite based

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High Performance Functional Bio-based Polymers for Skin-contact Products

High Performance Functional Bio-based Polymers for Skin-contact Products
  • Author : Maria Beatrice Coltelli,Serena Danti
  • Publisher : MDPI
  • Release : 14 January 2021
GET THIS BOOKHigh Performance Functional Bio-based Polymers for Skin-contact Products

Beauty masks, diapers, wound dressings, wipes, protective clothes and biomedical products: all these high-value and/or large-volume products must be highly compatible with human skin and they should have specific functional properties, such as anti-microbial, anti-inflammatory and anti-oxidant properties. They are currently partially or totally produced using fossil-based sources, with evident issues linked to their end of life, as their waste generates an increasing environmental concern. On the contrary, biopolymers and active biomolecules from biobased sources could be used to

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Bio Monomers for Green Polymeric Composite Materials

Bio Monomers for Green Polymeric Composite Materials
  • Author : Visakh P. M.,Oguz Bayraktar,Gopalakrishnan Menon
  • Publisher : John Wiley & Sons
  • Release : 21 October 2019
GET THIS BOOKBio Monomers for Green Polymeric Composite Materials

Presents new and innovative bio-based monomers to replace traditional petrochemical-based building blocks Featuring contributions from top experts in the field, this book discusses new developments in the area of bio monomers and green polymeric composite materials. It covers bio monomers, green polymeric composites, composites from renewable resources, bio-sourced polymers, green composites, biodegradation, processing methods, green polymeric gels, and green polymeric membranes. Each chapter in Bio Monomers for Green Polymeric Composites Materials presents the most recent research and technological ideas in

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Natural Polymers

Natural Polymers
  • Author : Ololade Olatunji
  • Publisher : Springer
  • Release : 24 December 2015
GET THIS BOOKNatural Polymers

This book introduces the most recent innovations in natural polymer applications in the food, construction, electronics, biomedical, pharmaceutical, and engineering industries. The authors provide perspectives from their respective range of industries covering classification, extraction, modification, and application of natural polymers from various sources in nature. They discuss the techniques used in analysis of natural polymers in various systems incorporating natural polymers as well as their intrinsic properties.

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Regenerative Medicine and Biomaterials for the Repair of Connective Tissues

Regenerative Medicine and Biomaterials for the Repair of Connective Tissues
  • Author : Charles Archer,Jim Ralphs
  • Publisher : Elsevier
  • Release : 12 January 2010
GET THIS BOOKRegenerative Medicine and Biomaterials for the Repair of Connective Tissues

Regenerative medicine for the repair of connective tissues is a fast moving field which generates a lot of interest. Unfortunately the biomaterials and biomechanics for soft tissue repair has been under-represented in the past. Particularly the natural association between cartilage, tendons and ligaments is often not made. Regenerative medicine and biomaterials for the repair of connective tissues addresses this gap in the market by bringing together the natural association of cartilage, tendons and ligaments to provide a review of the

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