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Effect of nano-sized bioactive glass particles on the angiogenic properties of collagen based composites

机译:纳米生物活性玻璃颗粒对胶原基复合材料血管生成特性的影响

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摘要

Angiogenesis is essential for tissue regeneration and repair. A growing body of evidence shows that the use of bioactive glasses (BG) in biomaterial-based tissue engineering (TE) strategies may improve angiogenesis and induce increased vascularization in TE constructs. This work investigated the effect of adding nano-sized BG particles (n-BG) on the angiogenic properties of bovine type I collagen-BG composites. Nano-sized (20–30 nm) BG particles of nominally 45S5 Bioglass® composition were used to prepare composite films, which were characterized by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The in vivo angiogenic response was evaluated using the quail chorioallantoic membrane (CAM) as an model of angiogenesis. At 24 h post-implantation, 10 wt% n-BG containing collagen films stimulated angiogenesis by increasing by 41 % the number of blood vessels branch points. In contrast, composite films containing 20 wt% n-BG were found to inhibit angiogenesis. This experimental study provides the first evidence that addition of a limited concentration of n-BG (10 wt%) to collagen films induces an early angiogenic response making selected collagen-BG composites attractive matrices for tissue engineering and regenerative medicine.
机译:血管生成对于组织再生和修复至关重要。越来越多的证据表明,在基于生物材料的组织工程(TE)策略中使用生物活性玻璃(BG)可能会改善血管生成并诱导TE结构中的血管生成增加。这项工作研究了添加纳米级BG颗粒(n-BG)对I型牛胶原蛋白/ n-BG复合材料血管生成特性的影响。使用标称为45S5Bioglass®组成的纳米级(20–30 nm)BG颗粒制备复合膜,通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)对其进行表征。使用鹌鹑绒毛膜尿囊膜(CAM)作为血管生成模型评估了体内血管生成反应。植入后24小时,含10 wt%的n-BG胶原蛋白膜可通过增加41%的血管分支点数来刺激血管生成。相反,发现包含20wt%的n-BG的复合膜抑制血管生成。这项实验研究提供了第一个证据,即向胶原膜中添加有限浓度的n-BG(10 wt%)会引起早期的血管生成反应,从而使选定的胶原/ n-BG复合材料成为组织工程和再生医学的有吸引力的基质。

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    Interdisciplinary Materials Group-IESIING-UCASAL INTECIN UBA-CONICET">(1);

    School of Natural Sciences National University of Salta">(2);

    Interdisciplinary Materials Group-IESIING-UCASAL INTECIN UBA-CONICET">(1);

    Interdisciplinary Materials Group-IESIING-UCASAL INTECIN UBA-CONICET">(1);

    School of Natural Sciences National University of Salta">(2);

    School of Natural Sciences National University of Salta">(2);

    School of Natural Sciences National University of Salta">(2);

    Department of Materials Science and Engineering Institute of Biomaterials University of Erlangen-Nuremberg">(3);

    Center for Nanoanalysis and Electron Microscopy (CENEM) University of Erlangen-Nuremberg">(4);

    Department of Materials Science and Engineering Institute of Biomaterials University of Erlangen-Nuremberg">(3);

    Center for Nanoanalysis and Electron Microscopy (CENEM) University of Erlangen-Nuremberg">(4);

    Department of Materials Science and Engineering Institute of Biomaterials University of Erlangen-Nuremberg">(3);

    Center for Nanoanalysis and Electron Microscopy (CENEM) University of Erlangen-Nuremberg">(4);

    Department of Materials Science and Engineering Institute of Biomaterials University of Erlangen-Nuremberg">(3);

    Interdisciplinary Materials Group-IESIING-UCASAL INTECIN UBA-CONICET">(1);

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