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Articles

Surface Modification of PHBV Scaffolds via UV Polymerization to Improve Hydrophilicity

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Pages 1589-1602 | Published online: 02 Apr 2012

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Zehua Qu & Jiandong Ding. (2013) Physical modification of the interior surfaces of PLGA porous scaffolds using sugar fibers as template. Journal of Biomaterials Science, Polymer Edition 24:4, pages 447-459.
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Lingyun Wang, Jiqing Du, Derong Cao & Yingjun Wang. (2013) Recent Advances and the Application of Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) as Tissue Engineering Materials. Journal of Macromolecular Science, Part A 50:8, pages 885-893.
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Articles from other publishers (13)

Maria Natividad Gómez-Cerezo, Rushabh Patel, Cedryck Vaquette, Lisbeth Grøndahl & Mingyuan Lu. (2022) In vitro evaluation of porous poly(hydroxybutyrate-co-hydroxyvalerate)/akermanite composite scaffolds manufactured using selective laser sintering. Biomaterials Advances 135, pages 212748.
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V.F. Cardoso, C.M. Costa, D.M. Correia, E.O. Carvalho, N. Peřinka, P.M. Martins, R.M. Meira, T. Marques-Almeida, T. Rodrigues-Marinho & S. Lanceros-Mendez. 2022. Organic Ferroelectric Materials and Applications. Organic Ferroelectric Materials and Applications 375 439 .
Rushabh Patel, Davide Monticone, Mingyuan Lu, Lisbeth Grøndahl & Han Huang. (2021) Hydrolytic degradation of porous poly(hydroxybutyrate-co-hydroxyvalerate) scaffolds manufactured using selective laser sintering. Polymer Degradation and Stability 187, pages 109545.
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Ariagna Rivera-Briso & Ángel Serrano-Aroca. (2018) Poly(3-Hydroxybutyrate-co-3-Hydroxyvalerate): Enhancement Strategies for Advanced Applications. Polymers 10:7, pages 732.
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Cristian Peptu & Marek Kowalczuk. 2018. Biomass as Renewable Raw Material to Obtain Bioproducts of High-Tech Value. Biomass as Renewable Raw Material to Obtain Bioproducts of High-Tech Value 271 313 .
Yu Ke, Caikun Liu, Xiaoye Zhang, Meng Xiao & Gang Wu. (2017) Surface Modification of Polyhydroxyalkanoates toward Enhancing Cell Compatibility and Antibacterial Activity. Macromolecular Materials and Engineering 302:11, pages 1700258.
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Y. Ke, X.Y. Zhang, S. Ramakrishna, L.M. He & G. Wu. (2017) Reactive blends based on polyhydroxyalkanoates: Preparation and biomedical application. Materials Science and Engineering: C 70, pages 1107-1119.
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I. V. Maiborodin, I. V. Kuznetsova, A. I. Shevela, A. A. Manaev & G. A. Chastikin. (2014) The interaction of polyhydroxyalkanoate polymer group with cells and tissues. Biopolymers and Cell 30:4, pages 273-278.
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Yu Ke, Gang Wu & Yingjun Wang. (2014) PHBV/PAM Scaffolds with Local Oriented Structure through UV Polymerization for Tissue Engineering. BioMed Research International 2014, pages 1-9.
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Jing Zhong Luk, Justin Cooper-White, Llew Rintoul, Elena Taran & Lisbeth Grøndahl. (2013) Functionalised polycaprolactone films and 3D scaffolds via gamma irradiation-induced grafting. Journal of Materials Chemistry B 1:33, pages 4171.
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Kanika Chawla. (2012) Biomaterials for tissue engineering and regenerative medicine: Treatment of musculoskeletal injury and disease. Materials Science and Engineering: A 557, pages 45-53.
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Kanika Chawla, Ting-bin Yu, Lisa Stutts, Max Yen & Zhibin Guan. (2012) Modulation of chondrocyte behavior through tailoring functional synthetic saccharide–peptide hydrogels. Biomaterials 33:26, pages 6052-6060.
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Sangwon Chung & Martin W. King. (2011) Design concepts and strategies for tissue engineering scaffolds. Biotechnology and Applied Biochemistry 58:6, pages 423-438.
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