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Chitosan for Biomaterials II [electronic resource] /edited by Rangasamy Jayakumar, M. Prabaharan, Riccardo A. A. Muzzarelli.

by Jayakumar, Rangasamy [editor.]; Prabaharan, M [editor.]; Muzzarelli, Riccardo A. A [editor.]; SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Advances in Polymer Science: 244Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2011.Description: XII, 212 p. online resource.ISBN: 9783642240614.Subject(s): Chemistry | Microbiology | Polymers | Chemistry | Polymer Sciences | Medical MicrobiologyDDC classification: 541.2254 Online resources: Click here to access online
Contents:
Polymeric Bionanocomposites as Promising Materials for Controlled Drug, by M. Prabaharan, R. Jayakumar -- Chitosan and Chitosan Derivatives in Drug Delivery and Tissue Engineering, by R. Riva, H. Ragelle, A. des Rieux, N. Duhem, C. Jérôme, and V. Préat -- Chitosan: A Promising Biomaterial for Tissue Engineering Scaffolds, by P. K. Dutta, K. Rinki and J. Dutta -- Chitosan-Based Biomaterials for Tissue Repair and Regeneration, by X. Liu, L. Ma, Z. Mao and C. Gao -- Use of Chitosan as a Bioactive Implant Coating for Bone-Implant Applications, by M. R. Leedy, H. J. Martin, P. A. Norowski, J. A. Jennings, W. O. Haggard, and J.D. Bumgardner -- New Techniques for Optimization of Surface Area and Porosity in Nanochitins and Nanochitosans, by R. A. A. Muzzarelli -- Production, Properties and Applications of Fungal Cell Wall Polysaccharides: Chitosan and Glucan, by N. New, T. Furuike, and H. Tamura.
In: Springer eBooksSummary: M. Prabaharan  R. Jayakumar Polymeric Bionanocomposites as Promising Materials for Controlled Drug R. Riva H. Ragelle A. des Rieux N. Duhem C. Jérôme V. Préat Chitosan and Chitosan Derivatives in Drug Delivery and Tissue Engineering P. K. Dutta K. Rinki J. Dutta Chitosan: A Promising Biomaterial for Tissue Engineering Scaffolds X. Liu L. Ma Z. Mao C. Gao Chitosan-Based Biomaterials for Tissue Repair and Regeneration M. R. Leedy H. J. Martin P. A. Norowski J. A. Jennings W. O. Haggard J.D. Bumgardner Use of Chitosan as a Bioactive Implant Coating for Bone-Implant Applications R. A. A. Muzzarelli New Techniques for Optimization of Surface Area and Porosity in Nanochitins and Nanochitosans N. New T. Furuike H. Tamura Production, Properties and Applications of Fungal Cell Wall Polysaccharides: Chitosan and Glucan  
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Polymeric Bionanocomposites as Promising Materials for Controlled Drug, by M. Prabaharan, R. Jayakumar -- Chitosan and Chitosan Derivatives in Drug Delivery and Tissue Engineering, by R. Riva, H. Ragelle, A. des Rieux, N. Duhem, C. Jérôme, and V. Préat -- Chitosan: A Promising Biomaterial for Tissue Engineering Scaffolds, by P. K. Dutta, K. Rinki and J. Dutta -- Chitosan-Based Biomaterials for Tissue Repair and Regeneration, by X. Liu, L. Ma, Z. Mao and C. Gao -- Use of Chitosan as a Bioactive Implant Coating for Bone-Implant Applications, by M. R. Leedy, H. J. Martin, P. A. Norowski, J. A. Jennings, W. O. Haggard, and J.D. Bumgardner -- New Techniques for Optimization of Surface Area and Porosity in Nanochitins and Nanochitosans, by R. A. A. Muzzarelli -- Production, Properties and Applications of Fungal Cell Wall Polysaccharides: Chitosan and Glucan, by N. New, T. Furuike, and H. Tamura.

M. Prabaharan  R. Jayakumar Polymeric Bionanocomposites as Promising Materials for Controlled Drug R. Riva H. Ragelle A. des Rieux N. Duhem C. Jérôme V. Préat Chitosan and Chitosan Derivatives in Drug Delivery and Tissue Engineering P. K. Dutta K. Rinki J. Dutta Chitosan: A Promising Biomaterial for Tissue Engineering Scaffolds X. Liu L. Ma Z. Mao C. Gao Chitosan-Based Biomaterials for Tissue Repair and Regeneration M. R. Leedy H. J. Martin P. A. Norowski J. A. Jennings W. O. Haggard J.D. Bumgardner Use of Chitosan as a Bioactive Implant Coating for Bone-Implant Applications R. A. A. Muzzarelli New Techniques for Optimization of Surface Area and Porosity in Nanochitins and Nanochitosans N. New T. Furuike H. Tamura Production, Properties and Applications of Fungal Cell Wall Polysaccharides: Chitosan and Glucan  

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