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Articles

Biocompatibility, Alignment Degree and Mechanical Properties of an Electrospun Chitosan–P(LLA-CL) Fibrous Scaffold

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Pages 2117-2128 | Published online: 02 Apr 2012

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Junzhao Chen, Chenxi Yan, Mengyu Zhu, Qinke Yao, Chunyi Shao, Wenjuan Lu, Jing Wang, Xiumei Mo, Ping Gu, Yao Fu & Xianqun Fan. (2015) Electrospun nanofibrous SF/P(LLA-CL) membrane: a potential substratum for endothelial keratoplasty. International Journal of Nanomedicine 10, pages 3337-3350.
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B. Hiebl, J. Cui, K. Kratz, O. Frank, M. Schossig, K. Richau, S. Lee, F. Jung & A. Lendlein. (2012) Viability, Morphology and Function of Primary Endothelial Cells on Poly(n-Butyl Acrylate) Networks Having Elastic Moduli Comparable to Arteries. Journal of Biomaterials Science, Polymer Edition 23:7, pages 901-915.
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Jin Ik Lim, Yong-Keun Lee, Jeon-Soo Shin & Kook-Jin Lim. (2011) Preparation of Interconnected Porous Chitosan Scaffolds by Sodium Acetate Particulate Leaching. Journal of Biomaterials Science, Polymer Edition 22:10, pages 1319-1329.
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Rasool Shabanloo, Somaye Akbari & Marjan Mirsalehi. (2022) Hybrid electrospun scaffolds based on polylactic acid/ PAMAM dendrimer/gemini surfactant for enhancement of synergistic antibacterial ability for biomedical application. Biomedical Materials 17:4, pages 045009.
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Ioannis Partheniadis, Konstantina Athanasiou, Ivo Laidmäe, Jyrki Heinämäki & Ioannis Nikolakakis. (2022) Physicomechanical characterization and tablet compression of theophylline nanofibrous mats prepared by conventional and ultrasound enhanced electrospinning. International Journal of Pharmaceutics 616, pages 121558.
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Marzieh Ghollasi & Delaram Poormoghadam. (2021) Enhanced neural differentiation of human‐induced pluripotent stem cells on aligned laminin‐functionalized polyethersulfone nanofibers; a comparison between aligned and random fibers on neurogenesis. Journal of Biomedical Materials Research Part A 110:3, pages 672-683.
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Mir Karim Razavi Aghjeh & Mir Jalil Razavi. 2022. Mechanics of Fibrous Networks. Mechanics of Fibrous Networks 317 354 .
Haifeng Liu, Yuqing Wang, Yi Yang, Anqing Wang, Chongquan Huang, Zhijun Zhao, Ping Li, Meili Liu & Yubo Fan. (2020) Aligned graphene/silk fibroin conductive fibrous scaffolds for guiding neurite outgrowth in rat spinal cord neurons. Journal of Biomedical Materials Research Part A 109:4, pages 488-499.
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Irena Borisova, Olya Stoilova, Nevena Manolova & Iliya Rashkov. (2020) Modulating the Mechanical Properties of Electrospun PHB/PCL Materials by Using Different Types of Collectors and Heat Sealing. Polymers 12:3, pages 693.
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Mollie M. SmoakAlbert HanEmma WatsonAlysha KishanK. Jane Grande-AllenElizabeth Cosgriff-HernandezAntonios G. Mikos. (2019) Fabrication and Characterization of Electrospun Decellularized Muscle-Derived Scaffolds. Tissue Engineering Part C: Methods 25:5, pages 276-287.
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Aochen Wang, Ming Hu, Liwei Zhou & Xiaoyong Qiang. (2019) Self-Powered Well-Aligned P(VDF-TrFE) Piezoelectric Nanofiber Nanogenerator for Modulating an Exact Electrical Stimulation and Enhancing the Proliferation of Preosteoblasts. Nanomaterials 9:3, pages 349.
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Zahra Bazrafshan & George K. Stylios. (2018) Custom-built electrostatics and supplementary bonding in the design of reinforced Collagen-g-P(methyl methacrylate-co-ethyl acrylate)/ nylon 66 core-shell fibers. Journal of the Mechanical Behavior of Biomedical Materials 87, pages 19-29.
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Nasim Golafshan, Mahshid Kharaziha, Mohammadhossein Fathi, Benjamin L. Larson, Giorgio Giatsidis & Nafiseh Masoumi. (2018) Anisotropic architecture and electrical stimulation enhance neuron cell behaviour on a tough graphene embedded PVA: alginate fibrous scaffold. RSC Advances 8:12, pages 6381-6389.
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Abdalla Abdal-hay, Michal Bartnikowski, Stephen Hamlet & Sašo Ivanovski. (2018) Electrospun biphasic tubular scaffold with enhanced mechanical properties for vascular tissue engineering. Materials Science and Engineering: C 82, pages 10-18.
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Shih-Feng Chou & Kim A. Woodrow. (2017) Relationships between mechanical properties and drug release from electrospun fibers of PCL and PLGA blends. Journal of the Mechanical Behavior of Biomedical Materials 65, pages 724-733.
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Kuwabo Mubyana, Ryan A. Koppes, Kristen L. Lee, James A. Cooper & David T. Corr. (2016) The influence of specimen thickness and alignment on the material and failure properties of electrospun polycaprolactone nanofiber mats. Journal of Biomedical Materials Research Part A 104:11, pages 2794-2800.
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A. Toncheva, R. Mincheva, M. Kancheva, N. Manolova, I. Rashkov, P. Dubois & N. Markova. (2016) Antibacterial PLA/PEG electrospun fibers: Comparative study between grafting and blending PEG. European Polymer Journal 75, pages 223-233.
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M. Spasova, N. Manolova, N. Markova & I. Rashkov. (2016) Superhydrophobic PVDF and PVDF-HFP nanofibrous mats with antibacterial and anti-biofouling properties. Applied Surface Science 363, pages 363-371.
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Kai Wang, Weilong Cui, Yongzhen Wei, Meifeng Zhu, Qiang Zhao & Deling Kong. 2016. Polymeric Biomaterials for Tissue Regeneration. Polymeric Biomaterials for Tissue Regeneration 315 351 .
Edoardo Mazza & Alexander E. Ehret. (2015) Mechanical biocompatibility of highly deformable biomedical materials. Journal of the Mechanical Behavior of Biomedical Materials 48, pages 100-124.
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Jin Ik Lim & Woo-Kul Lee. (2014) Preparation of macroporous chitosan patch using co-solvent as a transdermal drug-delivery system. Journal of Porous Materials 21:5, pages 783-788.
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Houman Savoji, Afra Hadjizadeh, Marion Maire, Abdellah Ajji, Michael R. Wertheimer & Sophie Lerouge. (2014) Electrospun Nanofiber Scaffolds and Plasma Polymerization: A Promising Combination Towards Complete, Stable Endothelial Lining for Vascular Grafts. Macromolecular Bioscience 14:8, pages 1084-1095.
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Anwarul Hasan, Adnan Memic, Nasim Annabi, Monowar Hossain, Arghya Paul, Mehmet R. Dokmeci, Fariba Dehghani & Ali Khademhosseini. (2014) Electrospun scaffolds for tissue engineering of vascular grafts. Acta Biomaterialia 10:1, pages 11-25.
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Jin Ik Lim & Hun-Kuk Park. (2011) Preparation of enhanced three-dimensional porous chitosan scaffolds by acetylation and aqueous extraction. Journal of Porous Materials 19:5, pages 537-542.
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Pavel Kiselev & Joan Rosell‐Llompart. (2012) Highly aligned electrospun nanofibers by elimination of the whipping motion. Journal of Applied Polymer Science 125:3, pages 2433-2441.
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Yong Zhang, Ying Lei, Jing Chang, Li Li, Bin He & Zhongwei Gu. (2012) Guidance of myoblast migration on aligned electrospun PLGA nanofibrous meshes. Materials Letters 68, pages 218-221.
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Yoshihiko Hayashi, Shizuka Yamada, Kajiro Yanagi Guchi, Zenya Koyama & Takeshi Ikeda. 2012. Marine Medicinal Foods - Implications and Applications - Animals and Microbes. Marine Medicinal Foods - Implications and Applications - Animals and Microbes 107 120 .
S. Van Vlierberghe, P. Dubruel & E. Schacht. (2011) Biopolymer-Based Hydrogels As Scaffolds for Tissue Engineering Applications: A Review. Biomacromolecules 12:5, pages 1387-1408.
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Amal Owida, Rui Chen, Shital Patel, Yos Morsi & Xiumei Mo. (2011) Artery vessel fabrication using the combined fused deposition modeling and electrospinning techniques. Rapid Prototyping Journal 17:1, pages 37-44.
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Chaobo Huang, Stefaan J. Soenen, Joanna Rejman, Bart Lucas, Kevin Braeckmans, Jo Demeester & Stefaan C. De Smedt. (2011) Stimuli-responsive electrospun fibers and their applications. Chemical Society Reviews 40:5, pages 2417.
Crossref
Brett C. Isenberg, Chrysanthi Williams & Robert T. Tranquillo. 2011. Principles of Regenerative Medicine. Principles of Regenerative Medicine 853 875 .
J. A. Kluge & R. L. Mauck. 2012. Biomedical Applications of Polymeric Nanofibers. Biomedical Applications of Polymeric Nanofibers 101 130 .

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