Comparative investigation of porous nano-hydroxyapaptite/chitosan, nano-zirconia/chitosan and novel nano-calcium zirconate/chitosan composite scaffolds for their potential applications in bone regeneration.
暂无分享,去创建一个
[1] A. C. Jayasuriya,et al. Nano-scale characterization of nano-hydroxyapatite incorporated chitosan particles for bone repair. , 2018, Colloids and surfaces. B, Biointerfaces.
[2] A. C. Jayasuriya,et al. Injectable nanosilica–chitosan microparticles for bone regeneration applications , 2018, Journal of biomaterials applications.
[3] M. Flores-Martínez,et al. Synthesis and characterisation of β-TCP/bioglass/zirconia scaffolds , 2017 .
[4] M. Das,et al. Mechanical and biological investigations of chitosan–polyvinyl alcohol based ZrO2 doped porous hybrid composites for bone tissue engineering applications , 2017 .
[5] Ying-Jie Zhu,et al. A novel composite scaffold comprising ultralong hydroxyapatite microtubes and chitosan: preparation and application in drug delivery. , 2017, Journal of materials chemistry. B.
[6] Feng Chen,et al. Highly Flexible Multifunctional Biopaper Comprising Chitosan Reinforced by Ultralong Hydroxyapatite Nanowires. , 2017, Chemistry.
[7] M. Das,et al. Development of bone-like zirconium oxide nanoceramic modified chitosan based porous nanocomposites for biomedical application. , 2017, International journal of biological macromolecules.
[8] Nongyue He,et al. Recent advances in nano scaffolds for bone repair , 2016, Bone Research.
[9] J. Bumgardner,et al. An overview of chitin or chitosan/nano ceramic composite scaffolds for bone tissue engineering. , 2016, International journal of biological macromolecules.
[10] A. C. Jayasuriya,et al. Fabrication and characterization of carboxymethyl cellulose novel microparticles for bone tissue engineering. , 2016, Materials science & engineering. C, Materials for biological applications.
[11] L. Meseguer-Olmo,et al. Assessment of Effects of Si-Ca-P Biphasic Ceramic on the Osteogenic Differentiation of a Population of Multipotent Adult Human Stem Cells , 2016, Materials.
[12] Yong Liu,et al. Development of Novel Biocomposite Scaffold of Chitosan-Gelatin/Nanohydroxyapatite for Potential Bone Tissue Engineering Applications , 2016, Nanoscale Research Letters.
[13] M. Morra,et al. Novel bioceramic-reinforced hydrogel for alveolar bone regeneration. , 2016, Acta biomaterialia.
[14] C. Stanford,et al. Correction: Effect of Pore Size and Porosity on the Biomechanical Properties and Cytocompatibility of Porous NiTi Alloys , 2016, PloS one.
[15] Do-Gyoon Kim,et al. Preparation and characterization of nano-sized hydroxyapatite/alginate/chitosan composite scaffolds for bone tissue engineering. , 2015, Materials science & engineering. C, Materials for biological applications.
[16] David Gibbs,et al. Bone Tissue Engineering , 2015, Current Molecular Biology Reports.
[17] J. Gambe,et al. X-ray diffraction and infrared spectroscopy analyses on the crystallinity of engineered biological hydroxyapatite for medical application , 2015 .
[18] C. Stanford,et al. Effect of Pore Size and Porosity on the Biomechanical Properties and Cytocompatibility of Porous NiTi Alloys , 2015, PloS one.
[19] R. Emadi,et al. Nano-composite of silk fibroin-chitosan/Nano ZrO2 for tissue engineering applications: fabrication and morphology. , 2015, International journal of biological macromolecules.
[20] H. Zreiqat,et al. Zirconium Ions Up-Regulate the BMP/SMAD Signaling Pathway and Promote the Proliferation and Differentiation of Human Osteoblasts , 2015, PloS one.
[21] Young-Gyun Song,et al. Characteristics and osteogenic effect of zirconia porous scaffold coated with β-TCP/HA , 2014, The journal of advanced prosthodontics.
[22] A. Afzal. Implantable zirconia bioceramics for bone repair and replacement: A chronological review , 2014 .
[23] J. Ramirez-Vick,et al. Scaffold design for bone regeneration. , 2014, Journal of nanoscience and nanotechnology.
[24] Jan Henkel,et al. Bone Regeneration Based on Tissue Engineering Conceptions — A 21st Century Perspective , 2013, Bone Research.
[25] Cleo Choong,et al. Three-dimensional scaffolds for tissue engineering applications: role of porosity and pore size. , 2013, Tissue engineering. Part B, Reviews.
[26] K. Kim,et al. Porous zirconia/hydroxyapatite scaffolds for bone reconstruction. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[27] W R Broughton,et al. The use of the PeakForceTM quantitative nanomechanical mapping AFM-based method for high-resolution Young's modulus measurement of polymers , 2011 .
[28] Zhuxin Dong,et al. Determination of mechanical properties of soft tissue scaffolds by atomic force microscopy nanoindentation. , 2011, Journal of biomechanics.
[29] Rozalia Dimitriou,et al. Bone regeneration: current concepts and future directions , 2011, BMC medicine.
[30] Jung-Suk Han,et al. Effects of HA released calcium ion on osteoblast differentiation , 2010, Journal of materials science. Materials in medicine.
[31] Xiangxing Xu,et al. Fine tuning of the sizes and phases of ZrO2 nanocrystals , 2009 .
[32] Xinyu Shen,et al. Preparation and characterization of homogeneous chitosan-polylactic acid/hydroxyapatite nanocomposite for bone tissue engineering and evaluation of its mechanical properties. , 2009, Acta biomaterialia.
[33] Xu Feng,et al. Chemical and Biochemical Basis of Cell-Bone Matrix Interaction in Health and Disease. , 2009, Current chemical biology.
[34] R. Misra,et al. Biomimetic chitosan-nanohydroxyapatite composite scaffolds for bone tissue engineering. , 2009, Acta biomaterialia.
[35] S. Solomon,et al. Synthesis, characterization and microwave dielectric properties of nanocrystalline CaZrO3 ceramics , 2008 .
[36] P. Thomsen,et al. Bone ingrowth in zirconia and hydroxyapatite scaffolds with identical macroporosity , 2008, Journal of materials science. Materials in medicine.
[37] Molly M. Stevens,et al. Biomaterials for bone tissue engineering , 2008 .
[38] Y. Gong,et al. A study on the bioactivity of chitosan/nano-hydroxyapatite composite scaffolds for bone tissue engineering , 2006 .
[39] Haibo Wang. Hydroxyapatite degradation and biocompatibility , 2004 .
[40] M. Dudek,et al. Calcium zirconate: preparation, properties and application to the solid oxide galvanic cells , 2002 .