Asymmetric barrier membranes based on polysaccharide micro-nanocomposite hydrogel: Synthesis, characterization, and their antibacterial and osteogenic activities

Guided tissue regeneration (GTR) strategies enable periodontal tissue regeneration, generally by providing barrier membranes. However, currently available membranes have limited osteoconductive and antibacterial potential. To address these challenges, we fabricated a new asymmetric barrier membrane....

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Veröffentlicht in:Carbohydrate polymers 2021-12, Vol.273, p.118525-118525, Article 118525
Hauptverfasser: He, Zhiqi, Zhou, Xiaolin, Wang, Yi, Lin, Jian, Huang, Siyan, Hu, Rongdang, Zhou, Yunlong, Qian, Qiuping, Deng, Hui
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Sprache:eng
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Zusammenfassung:Guided tissue regeneration (GTR) strategies enable periodontal tissue regeneration, generally by providing barrier membranes. However, currently available membranes have limited osteoconductive and antibacterial potential. To address these challenges, we fabricated a new asymmetric barrier membrane. Agarose hydrogel functions as the main body of the barrier membrane. Hollow carbonated hydroxyapatite (CHA) prepared by hydrothermal method, was sedimented in agarose to exhibit an asymmetrical structure. And ε-poly-lysine (ε-PLL) was chosen as an antimicrobial agent to equip the membrane with long-lasting antibacterial activity. With the increased dose of CHA addition, the barrier membrane shows better biocompatibility, and higher mechanical properties. We demonstrated the osteoconductivity and antibacterial properties of the membrane in vitro and in vivo. In summary, our findings suggest that the barrier membrane has good osteoconductive and antibacterial properties, indicating its potential for periodontal tissue engineering. [Display omitted] •Successfully prepared hollow carbonated hydroxyapatite (CHA).•Asymmetric barrier membranes were successfully prepared via facile and fast preparation.•The membranes show excellent osteoconductive in vitro/vivo.•ε-Poly-lysine (ε-PLL) was chosen as an antimicrobial agent to equip the membrane with long-lasting antibacterial activity.
ISSN:0144-8617
1879-1344
DOI:10.1016/j.carbpol.2021.118525