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Injectable hydrogels activated with copper sulfide nanoparticles for enhancing spatiotemporal sterilization and osteogenesis in periodontal therapy.
Yang, Yuting; Xu, Chunbin; Xu, Shengqian; Li, Yan; Chen, Ke'er; Yang, Tao; Bao, Jiaqi; Xu, Yajing; Chen, Jingyao; Mao, Chuanbin; Chen, Lili; Sun, Weilian.
Afiliação
  • Yang Y; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Xu C; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Xu S; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Li Y; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Chen K; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Yang T; School of Materials Science and Engineering, Zhejiang University, Hangzhou, Zhejiang, 310027, China.
  • Bao J; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Xu Y; School of Materials Science and Engineering, Zhejiang University, Hangzhou, Zhejiang, 310027, China.
  • Chen J; Facility for Histomorphology, Zhejiang University School of Medicine, Hangzhou, Zhejiang, 310027, China.
  • Mao C; Department of Biomedical Engineering, The Chinese University of Hong Kong, Hong Kong SAR, China. maophage@gmail.com.
  • Chen L; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
  • Sun W; Department of Periodontology, The Second Affiliated Hospital of Zhejiang University, School of Medicine, Hangzhou 310009, P.R. China. weiliansun@zju.edu.cn.
Biomater Sci ; 2024 May 07.
Article em En | MEDLINE | ID: mdl-38711336
ABSTRACT
Developing biomaterials capable of promoting bone regeneration in bacteria-infected sites is of utmost urgency for periodontal disease therapies. Here we produce a hybrid hydrogel by integrating CuS nanoparticles (CuSNPs), which could kill bacteria through photothermal therapy (PTT) triggered by a near infrared (NIR) light, and a gelatin methacryloyl (GelMA) hydrogel, which is injectable and biocompatible. Specifically, CuSNPs were precipitated by chitosan (CS) firstly, then grafted with methacrylic anhydride (MA) to form CuSNP@CS-MA, which was photo-crosslinked with GelMA to synthesize hybrid hydrogels (GelMA/CuSNP). The hybrid hydrogels exhibited a broad-spectrum antibacterial property that could be spatiotemprorally manipulated through applying a NIR light. Their mechanical properties were adjustable by controlling the concentration of CuSNPs, enabling the hydrogels to become more adapted to the oral diseases. Meanwhile, the hybrid hydrogels showed good cytocompatibility in vitro and improved hemostasis in vivo. Moreover, they accelerated alveolar osteogenesis and vascular genesis, successfully treating periodontis in four weeks in a rat model. GelMA/CuSNP hydrogels showed a broad-spectrum sterilization ability via PTT in vitro and outstanding antibacterial property in vivo, suggesting that the hybrid hydrogels could function in the challenging, bacteria-rich, oral environment. Such injectable hybrid hydrogels, capable of achieving both facilitated osteogenesis and NIR-inducible sterilization, represent a new biomaterial for treating periodontitis.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article