Literature DB >> 34779582

A Hierarchical-Structured Mineralized Nanofiber Scaffold with Osteoimmunomodulatory and Osteoinductive Functions for Enhanced Alveolar Bone Regeneration.

Yang He1, Mi Tian2, Xilin Li1, Jianwen Hou1, Song Chen2, Guang Yang3, Xian Liu2, Shaobing Zhou1.   

Abstract

Alveolar bone resorption is a major cause of teeth loss and jeopardizes the osseointegration of dental implants, greatly affecting patient's quality of life and health. It is still a great challenge to completely regenerate the alveolar bone defect through traditional guided bone regeneration (GBR) membranes due to their limited bioactivity and regeneration potential. Herein, a new hierarchical-structured mineralized nanofiber (HMF) scaffold, which is combined with both anisotropic and isotropic nanofibrous surface topography and the mineralized particles, is fabricated via a simple template-assisted electrospinning technology and in situ mineralization method. This HMF scaffold can not only directly induce osteogenic differentiation of bone mesenchymal stem cells (osteoinduction), but also stimulate macrophage toward pro-healing (M2) phenotype-polarization with an elevated secretion of the pro-healing cytokines, eventually enhancing the osteogenesis (osteoimmunomodulation). The results of in vivo rat alveolar bone defect repair experiments demonstrate that as compared with the combination of commercial Bio-Gide and Bio-Oss, the single HMF scaffold shows comparable or even superior bone repair effect, with better tissue-integration and more suitable degradation time and accompanied by a simplified operation.
© 2021 Wiley-VCH GmbH.

Entities:  

Keywords:  calcium phosphates; electrospun nanofibers; immunomodulation; osteogenesis; topography

Mesh:

Year:  2021        PMID: 34779582     DOI: 10.1002/adhm.202102236

Source DB:  PubMed          Journal:  Adv Healthc Mater        ISSN: 2192-2640            Impact factor:   9.933


  3 in total

1.  Cells-Micropatterning Biomaterials for Immune Activation and Bone Regeneration.

Authors:  Bingjun Zhang; Fei Han; Yufeng Wang; Yuhua Sun; Meng Zhang; Xiaopeng Yu; Chen Qin; Hongjian Zhang; Chengtie Wu
Journal:  Adv Sci (Weinh)       Date:  2022-04-28       Impact factor: 17.521

2.  Engineering Multifunctional Hydrogel With Osteogenic Capacity for Critical-Size Segmental Bone Defect Repair.

Authors:  Shaowei Zheng; Haobo Zhong; Hao Cheng; Xu Li; Guowei Zeng; Tianyu Chen; Yucong Zou; Weile Liu; Chunhan Sun
Journal:  Front Bioeng Biotechnol       Date:  2022-05-09

3.  3D printed PCLA scaffold with nano-hydroxyapatite coating doped green tea EGCG promotes bone growth and inhibits multidrug-resistant bacteria colonization.

Authors:  Xiangchun Zhang; Jian He; Liang Qiao; Ziqi Wang; Qinqin Zheng; Chengdong Xiong; Hui Yang; Kainan Li; Chengyin Lu; Sanqiang Li; Hongping Chen; Xulin Hu
Journal:  Cell Prolif       Date:  2022-07-05       Impact factor: 8.755

  3 in total

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