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Cryogenic 3D printing of dual-delivery scaffolds for improved bone regeneration with enhanced vascularization

机译:双输送支架的低温3D印刷具有增强血管化的骨再生

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摘要

Three-dimensional (3D) printing has been increasingly employed to produce advanced bone tissue engineering scaffolds with biomimetic structures and matched mechanical strengths, in order to induce improved bone regeneration in defects with a critical size. Given that the successful bone regeneration requires both excellent osteogenesis and vascularization, endowing scaffolds with both strong bone forming ability and favorable angiogenic potential would be highly desirable to induce improved bone regeneration with required vascularization. In this investigation, customized bone tissue engineering scaffolds with balanced osteoconductivity/osteoinductivity were produced via cryogenic 3D printing of β-tricalcium phosphate and osteogenic peptide (OP) containing water/poly(lactic- -glycolic acid)/dichloromethane emulsion inks. The fabricated scaffolds had a hierarchically porous structure and were mechanically comparable to human cancellous bone. Angiogenic peptide (AP) containing collagen I hydrogel was then coated on scaffold surface to further provide scaffolds with angiogenic capability. A sequential release with a quick AP release and a slow but sustained OP release was obtained for the scaffolds. Both rat endothelial cells (ECs) and rat bone marrow derived mesenchymal stem cells (MSCs) showed high viability on scaffolds. Improved migration and angiogenesis of ECs were obtained for scaffolds delivered with AP while enhanced osteogenic differentiation was observed in scaffolds containing OP. The results showed that, toward scaffolds containing both AP and OP, the quick release of AP induced obvious angiogenesis , while the sustained OP release significantly improved the new bone formation. This study provides a facile method to produce dual-delivery scaffolds to achieve multiple functions.
机译:三维(3D)印刷越来越多地用于生产具有仿生结构和匹配的机械强度的先进的骨组织工程支架,以便在具有临界尺寸的缺陷中诱导改善的骨再生。鉴于成功的骨再生需要出色的成骨和血管化,赋予具有强骨形成能力和有利血管生成潜力的支架是非常需要诱导改善血管化的改善的骨再生。在该研究中,通过含有水/聚(乳酸)/聚(乳酸)/二氯甲烷乳液油墨的β-三钙和成骨肽(OP)的低温3D印刷产生具有平衡的骨导电性/骨诱导性的定制骨组织工程支架。制造的支架具有等级多孔结构,并且与人松质骨骼机械地相当。然后涂覆含有胶原I水凝胶的血管生成肽(AP)在支架表面上,以进一步提供具有血管生成能力的支架。为支架获得了快速AP释放和缓慢但持续的OP释放的顺序释放。大鼠内皮细胞(ECS)和大鼠骨髓衍生的间充质干细胞(MSCs)在支架上显示出高活力。为用AP递送的支架获得ECS的改善的迁移和血管生成,同时在含有OP的支架中观察到增强的骨质发生分化。结果表明,对于含有AP和OP的支架,AP诱导明显血管生成的快速释放,而持续的OP释放显着改善了新的骨形成。本研究提供了一种生产双输送支架以实现多种功能的容易方法。

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