Alginate-Based Interpenetrating Network Carriers for Biomedical Applications

作者: Subhraseema Das , Usharani Subuddhi

DOI: 10.1007/978-981-15-0283-5_4

关键词: BiocompatibilityPolymerModern medicineMaterials scienceInterpenetrating polymer networkWound dressingNanotechnology

摘要: With advances in modern medicine, there has been a constant need to develop single material that caters all demands such as high tensile strength, biocompatibility and biodegradability. The development of an interpenetrating polymer network (IPN) is both outstanding innovation contribution led massive technological across wide spectrum applications medicine. IPNs comprising natural synthetic polymers are typically endowed with improved properties compared monolithic materials offer superior properties. Most importantly, synergism also observed most the systems. This chapter discusses potential alginate-based IPN carriers for biomedical applications.

参考文章(207)
Gökçe Coşkun, Esra Karaca, Mustafa Ozyurtlu, Serhat Özbek, Aysun Yermezler, İlkin Çavuşoğlu, Histological evaluation of wound healing performance of electrospun poly(vinyl alcohol)/sodium alginate as wound dressing in vivo Bio-medical Materials and Engineering. ,vol. 24, pp. 1527- 1536 ,(2014) , 10.3233/BME-130956
G-J Graulus, Arn Mignon, Sandra Van Vlierberghe, Heidi Declercq, Krisztina Fehér, Maria Cornelissen, JC Martins, Peter Dubruel, Cross-linkable alginate-graft-gelatin copolymers for tissue engineering applications European Polymer Journal. ,vol. 72, pp. 494- 506 ,(2015) , 10.1016/J.EURPOLYMJ.2015.06.033
Frederick U. Momoh, Joshua S. Boateng, Simon C.W. Richardson, Babur Z. Chowdhry, John C. Mitchell, Development and functional characterization of alginate dressing as potential protein delivery system for wound healing. International Journal of Biological Macromolecules. ,vol. 81, pp. 137- 150 ,(2015) , 10.1016/J.IJBIOMAC.2015.07.037
Joydip Kundu, Jin-Hyung Shim, Jinah Jang, Sung-Won Kim, Dong-Woo Cho, An additive manufacturing‐based PCL–alginate–chondrocyte bioprinted scaffold for cartilage tissue engineering Journal of Tissue Engineering and Regenerative Medicine. ,vol. 9, pp. 1286- 1297 ,(2015) , 10.1002/TERM.1682
Utkarsh Bhutani, Anindita Laha, Kishalay Mitra, Saptarshi Majumdar, Sodium alginate and gelatin hydrogels: Viscosity effect on hydrophobic drug release Materials Letters. ,vol. 164, pp. 76- 79 ,(2016) , 10.1016/J.MATLET.2015.10.114
Yu-Hsin Lin, Hsiang-Fa Liang, Ching-Kuang Chung, Mei-Chin Chen, Hsing-Wen Sung, Physically crosslinked alginate/N,O-carboxymethyl chitosan hydrogels with calcium for oral delivery of protein drugs. Biomaterials. ,vol. 26, pp. 2105- 2113 ,(2005) , 10.1016/J.BIOMATERIALS.2004.06.011
Mustafa Yiğitoğlu, Gülden Aydın, Nuran Işıklan, Microwave-assisted synthesis of alginate-g-polyvinylpyrrolidone copolymer and its application in controlled drug release Polymer Bulletin. ,vol. 71, pp. 385- 414 ,(2014) , 10.1007/S00289-013-1067-0
Kuen Yong Lee, David J. Mooney, ALGINATE: PROPERTIES AND BIOMEDICAL APPLICATIONS Progress in Polymer Science. ,vol. 37, pp. 106- 126 ,(2012) , 10.1016/J.PROGPOLYMSCI.2011.06.003
Kemal Baysal, Ayse Z Aroguz, Zelal Adiguzel, Bahattin M Baysal, None, Chitosan/alginate crosslinked hydrogels: Preparation, characterization and application for cell growth purposes International Journal of Biological Macromolecules. ,vol. 59, pp. 342- 348 ,(2013) , 10.1016/J.IJBIOMAC.2013.04.073