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Articles

Biocomposites Electrospun with Poly(ε-caprolactone) and Silk Fibroin Powder for Biomedical Applications

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Pages 1687-1699 | Published online: 02 Apr 2012

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Yongmin Wu, Geyang Cao, Hongjun Yang, Yingshan Zhou, Xin Liu & Weilin Xu. (2016) Effects of Fabric Structures on the Mechanical and Structural Properties of Poly(ϵ-Caprolactone)/Silk Fabric Biocomposites. Journal of Natural Fibers 13:1, pages 1-9.
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Wenbo Jiang, Jun Shi, Wei Li & Kang Sun. (2013) Three dimensional melt-deposition of polycaprolactone/bio-derived hydroxyapatite composite into scaffold for bone repair. Journal of Biomaterials Science, Polymer Edition 24:5, pages 539-550.
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Articles from other publishers (20)

Bowen Xie, Fengyuan Yang, Hongguang Chen, Hongxing Zhang, Hebin Ma, Tianqi Li, Zhiqiang Chen, Jingyuan Li, Xiaojie Li & Junjie Du. (2023) Electrospun polycaprolactone/silk fibroin nanofiber scaffold with aligned fiber orientation for articular chondrocyte regeneration. Frontiers in Materials 10.
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Meiyu Cao, Bingbing Zeng, Yu Zheng & Shaoyun Guo. (2023) Biocompatible shape-memory poly(propylene carbonate)/silk fibroin blend with body temperature responsiveness. RSC Advances 13:19, pages 13120-13127.
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Anushka Agarwal, Gyaneshwar K. Rao, Sudip Majumder, Manish Shandilya, Varun Rawat, Roli Purwar, Monu Verma & Chandra Mohan Srivastava. (2022) Natural protein-based electrospun nanofibers for advanced healthcare applications: progress and challenges. 3 Biotech 12:4.
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Alina Kirillova, Taylor R. Yeazel, Darya Asheghali, Shannon R. Petersen, Sophia Dort, Ken Gall & Matthew L. Becker. (2021) Fabrication of Biomedical Scaffolds Using Biodegradable Polymers. Chemical Reviews 121:18, pages 11238-11304.
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Soheila Mohammadzadehmoghadam & Yu Dong. 2021. Electrospun Polymers and Composites. Electrospun Polymers and Composites 111 146 .
Mohammed Badwelan, Mohammed Alkindi, Osama Alghamdi, Waseem Sharaf Saeed, Abdel-Basit Al-Odayni, Ali Alrahlah & Taieb Aouak. (2020) Poly(δ-valerolactone)/Poly(ethylene-co-vinylalcohol)/β-Tricalcium Phosphate Composite as Scaffolds: Preparation, Properties, and In Vitro Amoxicillin Release. Polymers 13:1, pages 46.
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Raminder Singh, David Eitler, René Morelle, Ralf P. Friedrich, Barbara Dietel, Christoph Alexiou, Aldo R. Boccaccini, Liliana Liverani & Iwona Cicha. (2020) Optimization of cell seeding on electrospun PCL-silk fibroin scaffolds. European Polymer Journal 134, pages 109838.
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Mojtaba Abbasian, Bakhshali Massoumi, Rahim Mohammad-Rezaei, Hadi Samadian & Mehdi Jaymand. (2019) Scaffolding polymeric biomaterials: Are naturally occurring biological macromolecules more appropriate for tissue engineering?. International Journal of Biological Macromolecules 134, pages 673-694.
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Shiva Balali, Seyed Mohammad Davachi, Razi Sahraeian, Behzad Shiroud Heidari, Javad Seyfi & Iman Hejazi. (2018) Preparation and Characterization of Composite Blends Based on Polylactic Acid/Polycaprolactone and Silk. Biomacromolecules 19:11, pages 4358-4369.
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Gu Cheng, Jiajia Chen, Qun Wang, Xuewen Yang, Yuet Cheng, Zhi Li, Hu Tu, Hongbing Deng & Zubing Li. (2018) Promoting osteogenic differentiation in pre-osteoblasts and reducing tibial fracture healing time using functional nanofibers. Nano Research 11:7, pages 3658-3677.
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Maryam Sharifi-Aghdam, Reza Faridi-Majidi, Mohammad Ali Derakhshan, Arash Chegeni & Mahmoud Azami. (2017) Preparation of collagen/polyurethane/knitted silk as a composite scaffold for tendon tissue engineering. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 231:7, pages 652-662.
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G M Arifuzzaman Khan, Nazire Deniz Yilmaz & Kenan Yilmaz. 2017. Handbook of Composites from Renewable Materials. Handbook of Composites from Renewable Materials 377 409 .
Promita Bhattacharjee, Banani Kundu, Deboki Naskar, Hae-Won Kim, Debasis Bhattacharya, T. K. Maiti & S. C. Kundu. (2015) Potential of inherent RGD containing silk fibroin–poly (Є-caprolactone) nanofibrous matrix for bone tissue engineering. Cell and Tissue Research 363:2, pages 525-540.
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Faheem A Sheikh, Hyung Woo Ju, Bo Mi Moon, Hyun Jung Park, Jung-Ho Kim, Soo Hyeon Kim, Ok Joo Lee & Chan Hum Park. (2014) A comparative mechanical and biocompatibility study of poly(ε-caprolactone), hybrid poly(ε-caprolactone)–silk, and silk nanofibers by colloidal electrospinning technique for tissue engineering. Journal of Bioactive and Compatible Polymers 29:5, pages 500-514.
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Ibrahim Hassounah, Nader Shehata, Amanda Hudson, Bruce Orler & Kathleen Meehan. (2014) Characteristics and 3D formation of PVA and PEO electrospun nanofibers with embedded urea. Journal of Applied Polymer Science 131:3, pages n/a-n/a.
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Abby ChainaniKirk J. HippensteelAlysha KishanN. William GarriguesDavid S. RuchFarshid GuilakDianne Little. (2013) Multilayered Electrospun Scaffolds for Tendon Tissue Engineering. Tissue Engineering Part A 19:23-24, pages 2594-2604.
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Nidal Hilal, Mohamed Khayet & Chris WrightCarmen García-Payo & Mohamed Khayet. 2012. Membrane Modification. Membrane Modification 215 258 .
Linhao Li, Haibin Li, Yuna Qian, Xian Li, Gurinder K. Singh, Li Zhong, Wanqian Liu, Yonggang Lv, Kaiyong Cai & Li Yang. (2011) Electrospun poly (ɛ-caprolactone)/silk fibroin core-sheath nanofibers and their potential applications in tissue engineering and drug release. International Journal of Biological Macromolecules 49:2, pages 223-232.
Crossref
Jong Kyu HongSundararajan V. Madihally. (2011) Next Generation of Electrosprayed Fibers for Tissue Regeneration. Tissue Engineering Part B: Reviews 17:2, pages 125-142.
Crossref
Nicholas R. Boyd, Richard L. Boyd, George P. Simon & David R. Nisbet. 2011. Tissue Engineering in Regenerative Medicine. Tissue Engineering in Regenerative Medicine 99 122 .

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