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首页> 外文期刊>Advanced Functional Materials >A Bi-Lineage Conducive Scaffold for Osteochondral Defect Regeneration
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A Bi-Lineage Conducive Scaffold for Osteochondral Defect Regeneration

机译:骨软骨缺损再生的双谱系支架。

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摘要

Because cartilage and bone tissues have different lineage-specific biological properties, it is challenging to fabricate a single type of scaffold that can biologically fulfill the requirements for regeneration of these two lineages simultaneously within osteochondral defects. To overcome this challenge, a lithium-containing mesoporous bioglass (Li-MBG) scaffold is developed. The efficacy and mechanism of Li-MBG for regeneration of osteochondral defects are systematically investigated. Histological and micro-CT results show that Li-MBG scaffolds significantly enhance the regeneration of subchondral bone and hyaline cartilage-like tissues as compared to pure MBG scaffolds, upon implantation in rabbit osteochondral defects for 8 and 16 weeks. Further investigation demonstrates that the released Li+ ions from the Li-MBC scaffolds may play a key role in stimulating the regeneration of osteochondral defects. The corresponding mechanistic pathways involve Li+ ions enhancing the proliferation and osteo-genic differentiation of bone mesenchymal stem cells (BMSCs) through activation of the Wnt signalling pathway, as well as Li+ ions protecting chondrocytes and cartilage tissues from the inflammatory osteoarthritis (OA) environment through activation of autophagy. These findings suggest that the incorporation of Li+ ions into bioactive MBG scaffolds is a viable strategy for fabricating bi-lineage conducive scaffolds that enhance regeneration of osteochondral defects.
机译:由于软骨和骨组织具有不同的谱系特异性生物学特性,因此制造一种能够在生物学上满足骨软骨缺损内同时满足这两个谱系再生要求的单一类型的支架具有挑战性。为了克服这一挑战,开发了一种含锂的介孔生物玻璃(Li-MBG)支架。系统地研究了Li-MBG再生骨软骨缺损的功效和机理。组织学和显微CT结果显示,与纯MBG支架相比,Li-MBG支架在植入兔骨软骨缺损中8和16周后,显着增强了软骨下骨和透明软骨样组织的再生。进一步的研究表明,从Li-MBC支架释放的Li +离子可能在刺激骨软骨缺损的再生中起关键作用。相应的机制途径涉及通过激活Wnt信号通路来增强骨骼间充质干细胞(BMSC)增殖和成骨分化的Li +离子,以及通过保护软骨细胞和软骨组织免受炎性骨关节炎(OA)环境的作用的Li +离子。自噬的激活。这些发现表明,将Li +离子掺入具有生物活性的MBG支架中是一种可行的策略,可用于制造可增强骨软骨缺损再生的双谱系导电支架。

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  • 来源
    《Advanced Functional Materials》 |2014年第28期|4473-4483|共11页
  • 作者单位

    Center for Stem Cell and Tissue Engineering School of Medicine Zhejiang Provincial Key Lab for Tissue Engineering and Regenerative Medicine Zhejiang University 866 Yu Hang Tang Road Hangzhou 310058, China;

    Center for Stem Cell and Tissue Engineering School of Medicine Zhejiang Provincial Key Lab for Tissue Engineering and Regenerative Medicine Zhejiang University 866 Yu Hang Tang Road Hangzhou 310058, China;

    State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences, 1295 Dingxi Road Shanghai 200050, China;

    Center for Stem Cell and Tissue Engineering School of Medicine Zhejiang Provincial Key Lab for Tissue Engineering and Regenerative Medicine Zhejiang University 866 Yu Hang Tang Road Hangzhou 310058, China;

    Center for Stem Cell and Tissue Engineering School of Medicine Zhejiang Provincial Key Lab for Tissue Engineering and Regenerative Medicine Zhejiang University 866 Yu Hang Tang Road Hangzhou 310058, China;

    Center for Stem Cell and Tissue Engineering School of Medicine Zhejiang Provincial Key Lab for Tissue Engineering and Regenerative Medicine Zhejiang University 866 Yu Hang Tang Road Hangzhou 310058, China;

    State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences, 1295 Dingxi Road Shanghai 200050, China;

    Department of Biosystems Science & Engineering (D-BSSE) ETH-Zurich, Mattenstrasse 26 Basel 4058, Switzerland;

    Institute of Health and Biomedical Innovation Queensland University of Technology 60 Musk Ave, Kelvin Grove Brisbane, Queensland 4059, Australia;

    Center for Stem Cell and Tissue Engineering School of Medicine Zhejiang Provincial Key Lab for Tissue Engineering and Regenerative Medicine Zhejiang University 866 Yu Hang Tang Road Hangzhou 310058, China;

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