首页> 外文期刊>ACS applied materials & interfaces >Modulation of Bone-Specific Tissue Regeneration by Incorporating Bone Morphogenetic Protein and Controlling the Shell Thickness of Silk Fibroin/Chitosan/Nanohydroxyapatite Core-Shell Nanofibrous Membranes
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Modulation of Bone-Specific Tissue Regeneration by Incorporating Bone Morphogenetic Protein and Controlling the Shell Thickness of Silk Fibroin/Chitosan/Nanohydroxyapatite Core-Shell Nanofibrous Membranes

机译:通过结合骨形态发生蛋白和控制丝素蛋白/壳聚糖/纳米羟基磷灰石核壳纳米纤维膜的壳厚度来调节骨特异性组织的再生。

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The presence of both osteoconductive and osteoinductive factors is important in promoting stem cell differentiation toward the osteogenic lineage. In this study, we prepared silk fibroin/chitosananohydroxyapatite/bone morphogenetic protein-2 (SF/CSHAP/BMP-2, SCHB2) nano-fibrous membranes (NFMs) by incorporating BMP-2 in the core and SF/CSHAP as the shell layer of a nanofiber with two different shell thicknesses (SCHB2-thick and SCHB-thin). The physicochemical properties of SCHB2 membranes were characterized and compared with those of SF/CS and SF/CSHAP NFMs. When tested in release studies, the release rate of BMP-2 and the concentration of BMP-2 in the release medium were higher for SCHB2-thin NFMs because of reduced shell thickness. The BMP-2 released from the nanofiber retained its osteoinductive activity toward human-bone-marrow-derived mesenchymal stem cells (hMSCs). Compared with SF/CS and SF/CSHAP NFMs, the incorporation of BMP-2-promoted osteogenic differentiation of hMSCs and the SCHB-thin NFM is the best scaffold during in vitro cell culture. Gene expression analysis by real-time quantitative polymerase chain reaction detected the evolution of both early and late marker genes of bone formation. The relative mRNA expression is in accordance with the effect of BMP-2 incorporation and shell thickness, while the same was reconfirmed through the quantification of bone marker protein osteocalcin. In vivo experiments were carried out by subcutaneously implanting hMSC-seeded SCHB2-thin NFMs and acellular controls on the back sides of nude mice. Immunohistochemical and histological staining confirmed ectopic bone formation and osteogenesis of hMSCs in SCHB2-thin NFMs. In conclusion, the SCHB2-thin NFM could be suggested as a promising scaffold for bone tissue engineering.
机译:骨传导性和骨诱导性因子的存在对于促进干细胞向成骨谱系的分化至关重要。在这项研究中,我们通过将BMP-2掺入核心和SF / CS中来制备丝素蛋白/壳聚糖/纳米羟基磷灰石/骨形态发生蛋白2(SF / CS / nHAP / BMP-2,SCHB2)纳米纤维膜(NFM)。 / nHAP作为具有两种不同壳厚度(SCHB2厚和SCHB薄)的纳米纤维的壳层。表征了SC​​HB2膜的理化性质,并与SF / CS和SF / CS / nHAP NFM进行了比较。在释放研究中进行测试时,SCHB2薄型NFM的BMP-2释放速率和释放介质中BMP-2的浓度较高,这是因为壳厚度减小了。从纳米纤维释放的BMP-2保留了其对人骨髓间充质干细胞(hMSCs)的骨诱导活性。与SF / CS和SF / CS / nHAP NFM相比,BMP-2促进hMSCs成骨分化和SCHB薄NFM的掺入是体外细胞培养过程中最好的支架。通过实时定量聚合酶链反应进行的基因表达分析可检测出早期和晚期骨形成标记基因的进化。相对mRNA表达取决于BMP-2掺入和壳厚度的影响,而通过骨标志物蛋白osteocalcin的定量证实了mRNA的相对表达。体内实验是通过在裸鼠的背部皮下植入hMSC接种的SCHB2薄型NFM和无细胞对照进行的。免疫组织化学和组织学染色证实了SCHB2薄型NFM中hMSC的异位骨形成和成骨作用。总之,可以建议将SCHB2薄型NFM作为骨组织工程的有前途的支架。

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