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Effect of grafting BMP2-derived peptide to nanoparticles on osteogenic and vasculogenic expression of stromal cells

机译:BMP2衍生肽接枝纳米颗粒对基质细胞成骨和血管生成的影响

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Bone morphogenetic protein-2 (BMP2) plays a major role in initiating the cascade of osteogenesis. However, high doses of exogenous BMP2 coupled with diffusion away from the intended site cause adverse side-effects. An alternative is to use biodegradable polymeric nanoparticles (NPs) grafted with peptides of the active domains of BMP2. NPs present a multivalent form of the peptide for stronger interaction with cell surface receptors, leading to a stronger activation of osteogenic signalling pathways. The objective of this work was to compare osteogenic activity of the BMP2 peptide (BMP2Pe), corresponding to residues 73-92 of BMP2 protein (BMP2Pr), grafted to biodegradable NPs with that of BMP2 protein (BMP2Pr). BMP2Pe was functionalized with a cysteine residue and grafted to poly(lactide fumarate) and poly(lactide-co-ethylene oxide fumarate) (PLAF/PLEOF) NPs via a thioether link. The calcium content of bone marrow stromal (BMS) cells cultured in osteogenic medium supplemented with BMP2 peptide/protein-grafted NPs (BMP2Pe-gNP and BMP2Pr-gNP) was slightly higher than other BMP2-treated groups, but all osteogenic groups showed similar levels of mineralization after 21days. The expression pattern of master transcription factors Dlx5 and Runx2 indicated that BMP2 protein induced faster osteogenic signalling than the BMP peptide. The expression level of Osteopontin (OP), Osteocalcin (OC) and PECAM-1 in the NP-grafted BMP2 groups was significantly higher than those of ungrafted BMP2Pr and BMP2Pe groups, which may be due to a more effective presentation of the peptide/protein to cell surface receptors, thus leading to a stronger interaction of the peptide/protein with clustered cell surface receptors.
机译:骨形态发生蛋白2(BMP2)在启动成骨过程中起主要作用。但是,高剂量的外源性BMP2加上远离预期部位的扩散会引起不利的副作用。一种替代方法是使用嫁接了BMP2活性域肽的生物可降解聚合物纳米颗粒(NPs)。 NPs呈现肽的多价形式,以与细胞表面受体更强的相互作用,导致成骨信号通路的更强活化。这项工作的目的是比较BMP2肽(BMP2Pe)的成骨活性,其对应于BMP2蛋白(BMP2Pr)的73-92位残基,接枝到BMP2蛋白(BMP2Pr)的生物降解性NPs中。 BMP2Pe用半胱氨酸残基官能化,并通过硫醚键接枝到聚(丙交酯富马酸酯)和聚(丙交酯-环氧乙烷-富马酸乙烯酯)(PLAF / PLEOF)NP。在补充了BMP2肽/蛋白质移植的NPs(BMP2Pe-gNP和BMP2Pr-gNP)的成骨培养基中培养的骨髓基质(BMS)钙含量略高于其他BMP2处理组,但所有成骨组的钙水平相似21天后矿化作用。主转录因子D1x5和Runx2的表达模式表明,BMP2蛋白比BMP肽诱导更快的成骨信号传导。 NP移植的BMP2组中骨桥蛋白(OP),骨钙蛋白(OC)和PECAM-1的表达水平显着高于未移植的BMP2Pr和BMP2Pe组,这可能是由于肽/蛋白的表达更有效细胞表面受体与细胞表面受体结合,因此导致肽/蛋白质与簇状细胞表面受体之间更强的相互作用。

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