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将RGD和BMP-2蛋白衍生肽接枝到水凝胶基质上对骨髓基质细胞成骨分化的影响。

Effect of grafting RGD and BMP-2 protein-derived peptides to a hydrogel substrate on osteogenic differentiation of marrow stromal cells.

作者信息

He Xuezhong, Ma Junyu, Jabbari Esmaiel

机构信息

Biomimetic Materials Laboratory, Department of Chemical Engineering, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Langmuir. 2008 Nov 4;24(21):12508-16. doi: 10.1021/la802447v. Epub 2008 Oct 7.

Abstract

Osteogenic differentiation and mineralization of bone marrow stromal (BMS) cells depends on the cells' interactions with bioactive peptides associated with the matrix proteins. The RGD peptides of ECM proteins interact with BMS cells through integrin surface receptors to facilitate cell spreading and adhesion. The BMP peptide corresponding to residues 73-92 of bone morphogenetic protein-2 promotes differentiation and mineralization of BMS cells. The objective of this work was to investigate the effects of RGD and BMP peptides, grafted to a hydrogel substrate, on osteogenic differentiation and mineralization of BMS cells. RGD peptide was acrylamide-terminated by reacting acrylic acid with the N-terminal amine group of the peptide to produce the functionalized Ac-GRGD peptide. The PEGylated BMP peptide was reacted with 4-carboxybenzenesulfonazide to produce an azide functionalized Az-mPEG-BMP peptide. Poly (lactide-co-ethylene oxide- co-fumarate) (PLEOF) macromer was cross-linked with Ac-GRGD peptide and propargyl acrylate to produce an RGD conjugated hydrogel. Az-mPEG-BMP peptide was grafted to the hydrogel by "click chemistry". The RGD and BMP peptide density on the hydrogel surface was 1.62+/-0.37 and 5.2+/-0.6 pmol/cm2, respectively. BMS cells were seeded on the hydrogels and the effect of RGD and BMP peptides on osteogenesis was evaluated by measuring ALPase activity and calcium content with incubation time. BMS cells cultured on RGD conjugated, BMP peptide grafted, and RGD+BMP peptide modified hydrogels showed 3, 2.5, and 5-fold increase in ALPase activity after 14 days incubation. BMS cells seeded on RGD+BMP peptides modified hydrogel showed 4.9- and 11.8-fold increase in calcium content after 14 and 21 days, respectively, which was significantly higher than RGD conjugated or BMP grafted hydrogels. These results demonstrate that RGD and BMP peptides, grafted to a hydrogel substrate, act synergistically to enhance osteogenic differentiation and mineralization of BMS cells. These findings are potentially useful in developing engineered scaffolds for bone regeneration.

摘要

骨髓基质(BMS)细胞的成骨分化和矿化取决于细胞与基质蛋白相关的生物活性肽之间的相互作用。细胞外基质(ECM)蛋白的RGD肽通过整合素表面受体与BMS细胞相互作用,以促进细胞铺展和黏附。与骨形态发生蛋白-2的73-92位残基对应的BMP肽可促进BMS细胞的分化和矿化。本研究的目的是研究接枝到水凝胶基质上的RGD和BMP肽对BMS细胞成骨分化和矿化的影响。通过使丙烯酸与肽的N端胺基反应,将RGD肽丙烯酰胺化,以制备功能化的Ac-GRGD肽。使聚乙二醇化的BMP肽与4-羧基苯磺酰叠氮化物反应,以制备叠氮化物功能化的Az-mPEG-BMP肽。聚(丙交酯-共-环氧乙烷-共-富马酸酯)(PLEOF)大分子单体与Ac-GRGD肽和炔丙基丙烯酸酯交联,以制备RGD共轭水凝胶。通过“点击化学法”将Az-mPEG-BMP肽接枝到水凝胶上。水凝胶表面的RGD和BMP肽密度分别为1.62±0.37和5.2±0.6 pmol/cm2。将BMS细胞接种到水凝胶上,并通过测量碱性磷酸酶(ALPase)活性和随培养时间的钙含量,评估RGD和BMP肽对成骨的影响。在RGD共轭、BMP肽接枝和RGD + BMP肽修饰的水凝胶上培养的BMS细胞,在培养14天后,ALPase活性分别增加了3倍、2.5倍和5倍。接种在RGD + BMP肽修饰水凝胶上的BMS细胞,在培养14天和21天后,钙含量分别增加了4.9倍和11.8倍,这显著高于RGD共轭或BMP接枝的水凝胶。这些结果表明,接枝到水凝胶基质上的RGD和BMP肽协同作用,可增强BMS细胞的成骨分化和矿化。这些发现对于开发用于骨再生的工程支架可能具有重要意义。

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