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A novel magnesium ion-incorporating dual-crosslinked hydrogel to improve bone scaffold-mediated osteogenesis and angiogenesis

机译:一种新的镁离子掺入双交联水凝胶,以改善骨支架介导的骨质发生和血管生成

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摘要

Osteogenesis is closely complemented by angiogenesis during the bone regeneration process. The development of functional hydrogel bone substitutes that mimic the extracellular matrix is a promising strategy for bone tissue engineering. However, the development of scaffold materials tailored to exhibit sufficient biomechanics, biodegradability, and favorable osteogenic and angiogenic activity continue to present a great challenge. Herein, we prepared a novel magnesium ion-incorporating dual-crosslinked hydrogel through the photocrosslinking of gelatin methacryloyl (GelMA), thiolated chitosan (TCS) and modified polyhedral oligomeric silsesquioxane (POSS) nanoparticles, and active Mg2+ ions were then introduced into system via coordination bonds of MgS, which can be tailored to possess superior mechanical strength, a stable network structure and more suitable pore size and degradation properties. The fabricated GelMA/TCS/POSS-Mg hydrogels effectively promoted cell adhesion, spreading, and proliferation, demonstrating that the introduction of POSS and Mg2+ not only stimulates the osteogenic differentiation of BMSCs but also promotes angiogenesis both in vitro and in vivo, thereby facilitating subsequent bone regeneration in calvarial defects of rats. Taken together, the results of this study indicate that the GelMA/TCS/POSS-Mg hydrogel has promising potential for repairing bone defects by promoting cell adhesion, osteogenesis and vascularization.
机译:成骨紧密由血管生成期间骨再生过程的补充。功能性水凝胶骨替代模拟细胞外基质的发展对骨组织工程有希望的策略。然而,针对表现出足够的生物力学,生物降解性,和良好的成骨和血管生成活性支架材料的发展仍然具有极大的挑战。在本文中,我们制备了一种新的镁离子掺入通过明胶甲基丙烯的光致交联(GelMA)双交联的水凝胶,硫醇化壳聚糖(TCS)和改性多面体低聚倍半硅氧烷(POSS)的纳米颗粒,然后活性的Mg2 +离子通过配位引入系统的MgS键,其可以被调整以具有优异的机械强度,稳定的网络结构和更适宜的孔径和降解性能。所制造的GelMA / TCS / POSS-Mg系水凝胶有效地促进细胞粘附,扩频和增殖,表明引入POSS和Mg的+不仅刺激骨髓基质细胞的成骨分化,但是也促进血管生成在体外和在体内,由此有利于随后的骨再生大鼠颅骨缺损。总之,本研究的结果表明,GelMA / TCS / POSS-Mg系的水凝胶有希望的潜力通过促进细胞粘附,骨生成和血管修复骨缺损。

著录项

  • 来源
    《Materials science & engineering》 |2021年第2期|111868.1-111868.13|共13页
  • 作者单位

    Peking Univ Shenzhen Hosp Dept Sports Med & Rehabil Shenzhen 518036 Peoples R China|Peking Univ Shenzhen Hosp Natl & Local Joint Engn Res Ctr Orthopaed Biomat Shenzhen 518036 Peoples R China;

    Peking Univ Shenzhen Hosp Dept Sports Med & Rehabil Shenzhen 518036 Peoples R China;

    Peking Univ Shenzhen Hosp Dept Sports Med & Rehabil Shenzhen 518036 Peoples R China;

    Peking Univ Shenzhen Hosp Dept Sports Med & Rehabil Shenzhen 518036 Peoples R China;

    Peking Univ Shenzhen Hosp Dept Bone & Joint Surg Shenzhen 518036 Peoples R China|Peking Univ Shenzhen Hosp Natl & Local Joint Engn Res Ctr Orthopaed Biomat Shenzhen 518036 Peoples R China;

    Peking Univ Shenzhen Hosp Dept Sports Med & Rehabil Shenzhen 518036 Peoples R China;

    Univ South Australia UniSA Clin & Hlth Sci Adelaide SA 5001 Australia|Univ South Australia UniSA Canc Res Inst Adelaide SA 5001 Australia;

    Southern Med Univ Dept Orthoped Affiliated Hosp 3 Guangzhou 510630 Peoples R China;

    Peking Univ Shenzhen Hosp Dept Sports Med & Rehabil Shenzhen 518036 Peoples R China;

    Guangdong Second Prov Gen Hosp Dept Orthopaed Guangzhou Guangdong Peoples R China;

    Guangzhou Sport Univ Guangzhou Guangdong Peoples R China;

    Peking Univ Shenzhen Hosp Dept Bone & Joint Surg Shenzhen 518036 Peoples R China|Peking Univ Shenzhen Hosp Natl & Local Joint Engn Res Ctr Orthopaed Biomat Shenzhen 518036 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    POSS; Magnesium ion-incorporating dual-crosslinked hydrogel; Bone regeneration; Osteogenesis and angiogenesis;

    机译:POSS;镁离子掺入双交联水凝胶;骨再生;骨肉发生和血管生成;

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