Description

Book Synopsis

Macroporous polymers are rapidly becoming the material of choice for many tissue engineering, bioseparation, and bioprocessing applications. However, while important information is scattered about in many different publications, none, to date, have drawn this information together in user-friendly format, until now. Meeting the need for an accessible, organized resource, Macroporous Polymers: Production Properties and Biotechnological/Biomedical Applications supplies a systematic presentation of the production, characterization, and application of these polymers.

The text discusses traditional methods of production, including phase separation polymerization, leaching, foaming, and double emulsion as well as emerging methods such as cryogelation. The chapters also detail the various applications of macroporous gels for the separation of biomolecules and for the cultivation of mammalian cells in bioreactors and for tissue engineering. The book underscores

Table of Contents

Macroporous Gels: A Theoretical Overview. Production of Macroporous Polymeric Materials by Phase Separation Polymerization. Production and Properties of Poly(Vinyl Alcohol) Cryogels. Production and Properties of Cryogels by Radical Polymerization. Cryogels from Carbohydrate Polymers. Macroporous Agarose Produced from Double Emulsions. Porous Polylactides and Polyalkonoates. Production of Macroporous Polymers using Foaming. Production of Macroporous Polymers using Leaching. Fast Responsive Macroporous Gels. Characterization of Macroporous Gels: Structure, Chemistry, and Physical Properties. Monolithic Macroporous Polymers as Chromatographic Matrices. Chromatographic Separation of Plasmid DNA using Macroporous Agarose-based Matrices. Cryogels as Matrices for Cell Separation and Cell Cultivation. Macroporous Gels for Isolation of Small Molecules From Crude Mixtures (Solutions Containing Suspended Material). Fundamentals of Growing Mammalian Cells in 3D Cultures: The Effect of Matrix Porosity. Production of Pharmaceuticals by Cultivation of Cells on Macroporous Polymeric Scaffolds. Macroporous Polymeric Scaffolds for Tissue Engineering: Recent Developments. Macroporous Polymeric Filters and Bioreactors for Biomedical Applications.

Macroporous Polymers

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    A Hardback by Bo Mattiasson, Ashok Kumar, Igor Yu. Galeaev

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      Publisher: Taylor & Francis Inc
      Publication Date: 23/12/2009
      ISBN13: 9781420084610, 978-1420084610
      ISBN10: 1420084615

      Description

      Book Synopsis

      Macroporous polymers are rapidly becoming the material of choice for many tissue engineering, bioseparation, and bioprocessing applications. However, while important information is scattered about in many different publications, none, to date, have drawn this information together in user-friendly format, until now. Meeting the need for an accessible, organized resource, Macroporous Polymers: Production Properties and Biotechnological/Biomedical Applications supplies a systematic presentation of the production, characterization, and application of these polymers.

      The text discusses traditional methods of production, including phase separation polymerization, leaching, foaming, and double emulsion as well as emerging methods such as cryogelation. The chapters also detail the various applications of macroporous gels for the separation of biomolecules and for the cultivation of mammalian cells in bioreactors and for tissue engineering. The book underscores

      Table of Contents

      Macroporous Gels: A Theoretical Overview. Production of Macroporous Polymeric Materials by Phase Separation Polymerization. Production and Properties of Poly(Vinyl Alcohol) Cryogels. Production and Properties of Cryogels by Radical Polymerization. Cryogels from Carbohydrate Polymers. Macroporous Agarose Produced from Double Emulsions. Porous Polylactides and Polyalkonoates. Production of Macroporous Polymers using Foaming. Production of Macroporous Polymers using Leaching. Fast Responsive Macroporous Gels. Characterization of Macroporous Gels: Structure, Chemistry, and Physical Properties. Monolithic Macroporous Polymers as Chromatographic Matrices. Chromatographic Separation of Plasmid DNA using Macroporous Agarose-based Matrices. Cryogels as Matrices for Cell Separation and Cell Cultivation. Macroporous Gels for Isolation of Small Molecules From Crude Mixtures (Solutions Containing Suspended Material). Fundamentals of Growing Mammalian Cells in 3D Cultures: The Effect of Matrix Porosity. Production of Pharmaceuticals by Cultivation of Cells on Macroporous Polymeric Scaffolds. Macroporous Polymeric Scaffolds for Tissue Engineering: Recent Developments. Macroporous Polymeric Filters and Bioreactors for Biomedical Applications.

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