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Chitosan composite scaffold combined with bone marrow-derived mesenchymal stem cells for bone regeneration: in vitro and in vivo evaluation

机译:壳聚糖复合支架与骨髓间充质干细胞联合用于骨再生:体内和体外评估

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摘要

The study aimed to develop a chitosan (CS)-based scaffold for repairing calvarial bone defects. We fabricated composite scaffolds made of CS and bovine-derived xenograft (BDX), characterized their physicochemical properties including pore size and porosity, absorption, degradation, and compressive strength, compared their efficacy to support in vitro proliferation and differentiation of human jaw bone marrow-derived mesenchymal stem cells (hJBMMSCs), and evaluated their bone regeneration capacity in critical-size rat calvarial defects. The CS/BDX (mass ratio of 40:60) composite scaffold with porosity of 46.23% and pore size of 98.23 μm exhibited significantly enhanced compressive strength than the CS scaffold (59.33 ± 4.29 vs. 18.82 ± 2.49 Kpa). The CS/BDX (40:60) scaffold induced better cell attachment and promoted more osteogenic differentiation of hJBMMSCs than the CS scaffold. The CS/BDX (40:60) scaffold seeded with hJBMMSCs was the most effective in supporting new bone formation, as evidenced by better histomorphometry results, larger new bone area, and more obvious mature lamellar bone formation compared to other groups in rat calvarial defects 8 weeks after implantation. These results suggest that CS/BDX composite scaffold combining with hJBMMSCs has the potential for bone defect regeneration.
机译:该研究旨在开发一种基于壳聚糖(CS)的支架,用于修复颅骨缺损。我们制作了由CS和牛源异种移植物(BDX)制成的复合支架,表征了它们的理化特性,包括孔径和孔隙率,吸收,降解和抗压强度,并比较了它们在支持人颌骨骨髓体外增殖和分化中的功效。衍生的间充质干细胞(hJBMMSC),并评估其在关键大小大鼠颅盖缺损中的骨再生能力。孔隙率为46.23%,孔径为98.23μm的CS / BDX(质量比为40:60)复合支架的抗压强度比CS支架显着提高(59.33±4.29 vs. 18.82±2.49 Kpa)。与CS支架相比,CS / BDX(40:60)支架诱导更好的细胞附着并促进hJBMMSC的成骨分化。与其他组相比,hJBMMSC植入的CS / BDX(40:60)支架最有效地支持新骨形成,与其他组相比,更好的组织形态学结果,更大的新骨面积以及更明显的成熟层状骨形成证明了这一点植入后8周。这些结果表明CS / BDX复合支架与hJBMMSCs结合具有骨缺损再生的潜力。

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