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High-Performance Photopolymerized Poly(vinyl alcohol)/Silica Nanocomposite Hydrogels with Enhanced Cell Adhesion.
Zhang, Can; Liang, Kaili; Zhou, Ding; Yang, Hongjun; Liu, Xin; Yin, Xianze; Xu, Weilin; Zhou, Yingshan; Xiao, Pu.
Afiliação
  • Zhang C; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Liang K; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Zhou D; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Yang H; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Liu X; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Yin X; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Xu W; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Zhou Y; Key Laboratory of Green Processing and Functional Textiles of New Textile Materials, Ministry of Education , Wuhan Textile University , Wuhan 430073 , People's Republic of China.
  • Xiao P; Research School of Chemistry , Australian National University , Canberra , Australian Capital Territory 2601 , Australia.
ACS Appl Mater Interfaces ; 10(33): 27692-27700, 2018 Aug 22.
Article em En | MEDLINE | ID: mdl-30048588
ABSTRACT
Poly(vinyl alcohol) (PVA) hydrogels have been considered as promising implants for various soft tissue engineering applications because of their tissue-like viscoelasticity and biocompatibility. However, two critical barriers including lack of sufficient mechanical properties and non-tissue-adhesive characterization limit their application as tissue substitutes. Herein, PVA is methacrylated with ultralow degrees of substitution of methacryloyl groups to produce PVA-glycidyl methacrylate (GMA). Subsequently, the PVA-GMA/methacrylate-functionalized silica nanoparticle (MSi)-based nanocomposite hydrogels are developed via the photopolymerization approach. Interestingly, both PVA-GMA-based hydrogels and PVA-GMA/MSi-based nanocomposite hydrogels exhibit outstanding compressive properties, which cannot be damaged through compressive stress-strain tests in the allowable scope of a tensile tester. Moreover, PVA-GMA/MSi-based nanocomposite hydrogels demonstrate excellent tensile properties compared with neat PVA-GMA-based hydrogels, and 15-, 14-, and 24-fold increase in fracture stress, elastic modulus, and toughness, respectively, is achieved for the PVA-GMA/MSi-based hydrogels with 10 wt % of MSi. These remarkable enhancements can be ascribed to the amount of long and flexible polymer chains of PVA-GMA and the strong interactions between the MSi and PVA-GMA chains. More interestingly, exciting improvements in the cell adhesion can also be successfully achieved by the incorporation of MSi nanoparticles.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Nanocompostos Idioma: En Revista: ACS Appl Mater Interfaces Assunto da revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Nanocompostos Idioma: En Revista: ACS Appl Mater Interfaces Assunto da revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Ano de publicação: 2018 Tipo de documento: Article