Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"First Otoliths/Collagen/Bacterial Cellulose Nanocomposites as a Potential Scaffold for Bone Tissue Regeneration"
written by G.M Olyveira, Daisy Pereira Valido, L.M.M. Costa, Plácia Barreto Prata Gois, Lauro Xavier Filho, Pierre Basmaji,
published by Journal of Biomaterials and Nanobiotechnology, Vol.2 No.3, 2011
has been cited by the following article(s):
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[2] Mechanical and thermal properties enhancement and swelling behavior of bacterial cellulose/collagen/polyvinyl alcohol nanofiber hydrogel film
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[3] Nanocellulose nanocomposites for biomedical applications
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[4] Commercial and potential applications of bacterial cellulose in Brazil: ten years review
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[5] Perspective applications and associated challenges of using nanocellulose in treating bone-related diseases
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[6] The application status of nanoscale cellulose-based hydrogels in tissue engineering and regenerative biomedicine
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[11] Otoliths-composed gelatin/sodium alginate scaffolds for bone regeneration
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[13] Surface-modified cellulose in biomedical engineering
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[14] Nanocellulose-based polymer hybrids and their emerging applications in biomedical engineering and water purification
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[15] Nanocellulose Composite Biomaterials in Industry and Medicine
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[18] Nanocellulose‐Based Composites in Biomedical Applications
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[19] engineering applications
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[20] Hybrid polysaccharide-based systems for biomedical applications
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[21] Effects of Collagen Concentration Variation toward Characteristics of Bacterial Cellulose-Collagen Biocomposites as Candidate of Artificial Dura Mater
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[22] Improved thermal and mechanical properties of bacterial cellulose with the introduction of collagen
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[23] Biocomposite Scaffolds Derived from Renewable Resources for Bone Tissue Repair
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[24] Bacterial cellulose for advanced medical materials
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[25] Microstructured multilevel bacterial cellulose allows the guided growth of neural stem cells
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[26] Advances in biomedical and pharmaceutical applications of functional bacterial cellulose-based nanocomposites
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[27] Métodos de estudios con otolitos: principios y aplicaciones Métodos de estudos com otólitos: princípios e aplicações
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[28] Design and Integration of a Nanohybrid Functional Biomaterial with Enhanced Mechanical and Thermal Properties
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[29] BIO-INSPIRED POLYMER NANOCOMPOSITES FOR TISSUE ENGINEERING APPLICATIONS
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[30] Recent advances in bacterial cellulose
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[31] Cellulose film regenerated from Styela clava tunics have biodegradability, toxicity and biocompatibility in the skin of SD rats
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[32] Morphology and thermal stability of bacterial cellulose/collagen composites
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[33] 纳米生物材料细菌纤维素在医学领域的应用研究
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[34] Development of bacterial cellulose membranes coated with hydroxyapatite for bone regeneration
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[35] Filho, L.; Pranke, P.; Basmaji, P. Human Dental Pulp Stem Cell Behavior Using Natural Nanotolith/Bacterial Cellulose Scaffolds for Regenerative Medicine
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[36] Physically modified bacterial cellulose as alternative routes for transdermal drug delivery
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[37] Human Dental Pulp Stem Cell Behavior Using Natural Nanotolith/Bacterial Cellulose Scaffolds for Regenerative Medicine
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[38] High Dispersivity Bacterial Cellulose/Carbon Nanotube Nanocomposite for Sensor Applications
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[39] Advances in bionanomaterials for bone tissue engineering
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[40] Novel Electrospun Nanotholits/PHB Scaffolds for Bone Tissue Regeneration
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[41] Evaluation of a bio‐based hydrophobic cellulose laurate film as biomaterial—Study on biodegradation and cytocompatibility
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[42] Bacterial cellulose towards functional medical materials
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