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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Combined effect of osteopontin and BMP-2 derived peptides grafted to an adhesive hydrogel on osteogenic and vasculogenic differentiation of marrow stromal cells
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Combined effect of osteopontin and BMP-2 derived peptides grafted to an adhesive hydrogel on osteogenic and vasculogenic differentiation of marrow stromal cells

机译:骨桥蛋白和BMP-2衍生肽移植到粘合水凝胶上的联合作用对骨髓基质细胞的成骨和血管生成分化的影响

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The objective of this work was to investigate the combined effect of grafting the peptide corresponding to amino acid residues 162-168 of osteopontin (OPD peptide) and the peptide corresponding to amino acid residues 73-92 of bone morphogenetic protein-2 (BMP peptide) to an RGD-conjugated inert hydrogel on osteogenic and vasculogenic differentiation of bone marrow stromal (BMS) cells. RGD-conjugated three-dimensional (3D) porous hydrogel scaffolds with well-defined cylindrical pore geometry were produced from sacrificial wax molds fabricated by fused deposition modeling rapid prototyping system. Propargyl acrylate and 4-pentenal were conjugated to the hydrogel for orthogonal grafting of BMP and OPD peptides by click reaction and oxime ligation, respectively. The OPD peptide was grafted by the reaction between aminooxy moiety of aminooxy-mPEG-OPD (mPEG = mini-poly(ethylene glycol)) and the aldehyde moiety in the hydrogel. The BMP peptide was grafted by the reaction between the azide moiety of Az-mPEG-BMP and the propargyl moiety in the hydrogel. The hydrogels seeded with BMS cells were characterized by biochemical, immunocytochemical, and mRNA analyses. Groups included RGD control hydrogel (RGD), RGD and BMP peptides without OPD (RGD+BMP), RGD and BMP peptides with mutant OPD (RGD+BMP+mOPD), and RGD and BMP peptides with OPD (RGD+BMP+OPD) grafted hydrogels. The extent of mineralization of RGD, RGD+BMP, RGD+BMP+mOPD, and RGD+BMP+OPD groups after 28 days was 650 ± 70, 990 ± 30, 850 ± 30, and 1150 ± 40 mg/(mg of DNA), respectively, indicating that the BMP and OPD peptides enhanced osteogenic differentiation of the BMS cells. The BMS cells seeded on RGD+BMP+OPD grafted hydrogels stained positive for vasculogenic markers α-SMA, PECAM-1, and VE-cadherin while the groups without OPD peptide (RGD+BMP and RGD+BMP+mOPD) stained only for α-SMA but not PECAM-1 or VE-cadherin. These results were consistent with the significantly higher PECAM-1 mRNA expression for RGD+BMP+OPD group after 21 and 28 days, compared to the groups without OPD. These findings suggest that the RGD+BMP+OPD peptides provide a favorable microenvironment for concurrent osteogenic and vasculogenic differentiation of progenitor marrow-derived cells.
机译:这项工作的目的是研究嫁接骨桥蛋白氨基酸残基162-168的肽(OPD肽)和骨形态发生蛋白2氨基酸残基73-92的肽(BMP肽)的联合作用。 RGD共轭惰性水凝胶对骨髓基质细胞(BMS)的成骨和血管生成分化的影响。 RGD共轭三维(3D)多孔水凝胶支架具有明确定义的圆柱孔几何结构,是通过熔融沉积建模快速原型系统制造的牺牲蜡模制成的。将丙烯酸炔丙酯和4-戊烯醛偶联到水凝胶上,分别通过点击反应和肟连接法将BMP和OPD肽正交接枝。 OPD肽通过氨基氧基-mPEG-OPD的氨基氧基部分(mPEG =小型聚乙二醇)与水凝胶中的醛部分之间的反应接枝。通过Az-mPEG-BMP的叠氮化物部分与水凝胶中的炔丙基部分之间的反应,接枝了BMP肽。通过生化,免疫细胞化学和mRNA分析来表征接种BMS细胞的水凝胶。组包括RGD对照水凝胶(RGD),不带OPD的RGD和BMP肽(RGD + BMP),带突变OPD的RGD和BMP肽(RGD + BMP + mOPD)以及带OPD的RGD和BMP肽(RGD + BMP + OPD)接枝水凝胶。 28天后RGD,RGD + BMP,RGD + BMP + mOPD和RGD + BMP + OPD组的矿化程度为650±70、990±30、850±30和1150±40 mg /(mg DNA ),分别表明BMP和OPD肽增强了BMS细胞的成骨分化。接种在RGD + BMP + OPD接枝水凝胶上的BMS细胞对血管生成标记α-SMA,PECAM-1和VE-钙粘蛋白染色呈阳性,而不含OPD肽的组(RGD + BMP和RGD + BMP + mOPD)仅对α染色-SMA,但不包括PECAM-1或VE-钙黏着蛋白。这些结果与21天和28天后RGD + BMP + OPD组的PECAM-1 mRNA表达相比无OPD的组明显更高。这些发现表明,RGD + BMP + OPD肽为祖先骨髓衍生细胞的同时成骨和血管生成分化提供了有利的微环境。

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