The Influence of Lyophilized EmuGel Silica Microspheres on the Physicomechanical Properties, In Vitro Bioactivity and Biodegradation of a Novel Ciprofloxacin-Loaded PCL/PAA Scaffold
暂无分享,去创建一个
[1] A. Angelopoulou,et al. A new approach to fabricate bioactive silica binary and ternary hybrid microspheres. , 2015, Materials science & engineering. C, Materials for biological applications.
[2] Minseong Kim,et al. A hybrid PCL/collagen scaffold consisting of solid freeform-fabricated struts and EHD-direct-jet-processed fibrous threads for tissue regeneration. , 2015, Journal of colloid and interface science.
[3] A. Mikos,et al. In vitro and in vivo evaluation of self-mineralization and biocompatibility of injectable, dual-gelling hydrogels for bone tissue engineering. , 2015, Journal of controlled release : official journal of the Controlled Release Society.
[4] J. Ferreira,et al. Mechanically stable antimicrobial chitosan-PVA-silver nanocomposite coatings deposited on titanium implants. , 2015, Carbohydrate polymers.
[5] M. Shokrgozar,et al. Effect of starch content on the biodegradation of polycaprolactone/starch composite for fabricating in situ pore-forming scaffolds , 2015 .
[6] Elizabeth G Loboa,et al. Naturally derived and synthetic scaffolds for skeletal muscle reconstruction. , 2015, Advanced drug delivery reviews.
[7] Wan Ting Sow,et al. Calcium phosphate coated Keratin-PCL scaffolds for potential bone tissue regeneration. , 2015, Materials science & engineering. C, Materials for biological applications.
[8] Jean Coudane,et al. Functionalized PCL/HA nanocomposites as microporous membranes for bone regeneration. , 2015, Materials science & engineering. C, Materials for biological applications.
[9] M. Mabrouk,et al. Effect of ciprofloxacin incorporation in PVA and PVA bioactive glass composite scaffolds , 2014 .
[10] V. Pillay,et al. An interfacially plasticized electro-responsive hydrogel for transdermal electro-activated and modulated (TEAM) drug delivery. , 2014, International journal of pharmaceutics.
[11] B. Madhan,et al. Sol-gel processed mupirocin silica microspheres loaded collagen scaffold: a synergistic bio-composite for wound healing. , 2014, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[12] Y. Lo,et al. Evaluation of Epirubicin in Thermogelling and Bioadhesive Liquid and Solid Suppository Formulations for Rectal Administration , 2013, International journal of molecular sciences.
[13] M. Mabrouk,et al. Fabrication, Characterization and Drug Release of Ciprofloxacin Loaded Porous Polyvinyl Alcohol/Bioactive Glass Scaffold for Controlled DrugDelivery , 2013 .
[14] Sabu Thomas,et al. Synthesis and characterisation of gelatin/zeolite porous scaffold , 2013 .
[15] N. Wada,et al. Effect of Poly(acrylic acid) and Polarization on the Controlled Crystallization of Calcium Carbonate on Single-Phase Calcite Substrates , 2013 .
[16] Yoshihiro Ito,et al. Sustained delivery of siRNA from dopamine-coated stainless steel surfaces. , 2013, Acta biomaterialia.
[17] S. R. Chennamaneni,et al. Development of a novel bioerodible dexamethasone implant for uveitis and postoperative cataract inflammation. , 2013, Journal of controlled release : official journal of the Controlled Release Society.
[18] Y. B. Choy,et al. Drug-inorganic-polymer nanohybrid for transdermal delivery. , 2013, International journal of pharmaceutics.
[19] Stephen J. Florczyk,et al. Enhanced bone tissue formation by alginate gel-assisted cell seeding in porous ceramic scaffolds and sustained release of growth factor. , 2012, Journal of biomedical materials research. Part A.
[20] H. Zhang,et al. Dual-tuned drug release by nanofibrous scaffolds of chitosan and mesoporous silica microspheres , 2012 .
[21] M. Spérandio,et al. Parameters influencing calcium phosphate precipitation in granular sludge sequencing batch reactor , 2012 .
[22] Byong-Taek Lee,et al. Preparation and characterization of a novel 3D scaffold from poly(ɛ-caprolactone)/biphasic calcium phosphate hybrid composite microspheres adhesion , 2012 .
[23] Li Zhao,et al. The Synthesis, Characterization and Application of Ciprofloxacin Complexes and Its Coordination with Copper, Manganese and Zirconium Ions , 2012 .
[24] Jun Lin,et al. pH-responsive drug delivery system based on luminescent CaF(2):Ce(3+)/Tb(3+)-poly(acrylic acid) hybrid microspheres. , 2012, Biomaterials.
[25] K. Chennazhi,et al. Biocompatible alginate/nano bioactive glass ceramic composite scaffolds for periodontal tissue regeneration. , 2012, Carbohydrate polymers.
[26] Shuhong Yu,et al. Bioinspired crystallization of CaCO3 coatings on electrospun cellulose acetate fiber scaffolds and corresponding CaCO3 microtube networks. , 2011, Langmuir : the ACS journal of surfaces and colloids.
[27] S. Iannace,et al. Novel 3D porous multi-phase composite scaffolds based on PCL, thermoplastic zein and ha prepared via supercritical CO2 foaming for bone regeneration , 2010 .
[28] E. Fortunati,et al. Biodegradable polymer matrix nanocomposites for tissue engineering: A review , 2010 .
[29] R. Prakash,et al. A facile methodology for the design of functionalized hollow silica spheres. , 2010, Journal of colloid and interface science.
[30] Rajendra K. Singh,et al. In vitro evaluation of bioactivity of CaO–SiO2–P2O5–Na2O–Fe2O3 glasses , 2009 .
[31] R. Zhuo,et al. Biodegradable and pH-sensitive hydrogels for cell encapsulation and controlled drug release. , 2008, Biomacromolecules.
[32] Guojun Liu,et al. Block copolymers in nanoscience , 2006 .
[33] Tadashi Kokubo,et al. How useful is SBF in predicting in vivo bone bioactivity? , 2006, Biomaterials.
[34] S. Hollister. Porous scaffold design for tissue engineering , 2005, Nature materials.
[35] R. Adhikari,et al. Biodegradable synthetic polymers for tissue engineering. , 2003, European cells & materials.
[36] A. Gedanken,et al. Acoustic cavitation leading to the morphosynthesis of mesoporous silica vesicles , 2002 .
[37] M. Mabrouk,et al. Comparative Study of Nanobioactive Glass Quaternary System 46S6 , 2016 .
[39] Z. Wzorek,et al. EVALUATION OF BIOACTIVITY OF POLY(ACRYLIC ACID) - HYDROXYAPATITE - NANOGOLD COMPOSITES IN IN VITRO CONDITIONS , 2012 .
[40] L. Hench,et al. Dose-dependent behavior of bioactive glass dissolution. , 2001, Journal of biomedical materials research.