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首页> 外文期刊>Biomaterials >Poly(ethylene glycol)-crosslinked gelatin hydrogel substrates with conjugated bioactive peptides influence endothelial cell behavior
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Poly(ethylene glycol)-crosslinked gelatin hydrogel substrates with conjugated bioactive peptides influence endothelial cell behavior

机译:聚(乙二醇) - 具有共轭的生物活性肽的聚糖粘土水凝胶底物影响内皮细胞行为

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摘要

The basement membrane is a specialized extracellular matrix substrate responsible for support and maintenance of epithelial and endothelial structures. Engineered basement membrane-like hydrogel systems have the potential to advance understanding of cell-cell and cell-matrix interactions by allowing precise tuning of the substrate or matrix biochemical and biophysical properties. In this investigation, we developed tunable hydrogel substrates with conjugated bioactive peptides to modulate cell binding and growth factor signaling by endothelial cells. Hydrogels were formed by employing a poly(ethylene glycol) crosslinker to covalently crosslink gelatin polymers and simultaneously conjugate laminin-derived YIGSR peptides or vascular endothelial growth factor (VEGF)-mimetic QK peptides to the gelatin. Rheological characterization revealed rapid formation of hydrogels with similar stiffnesses across tested formulations, and swelling analysis demonstrated dependency on peptide and crosslinker concentrations in hydrogels. Levels of phosphorylated VEGF Receptor 2 in cells cultured on hydrogel substrates revealed that while human umbilical vein endothelial cells (HUVECs) responded to both soluble and conjugated forms of the QK peptide, conditionally-immortalized human glomerular endothelial cells (GEnCs) only responded to the conjugated presentation of the peptide. Furthermore, whereas HUVECs exhibited greatest upregulation in gene expression when cultured on YIGSR- and QK-conjugated hydrogel substrates after 5 days, GEnCs exhibited greatest upregulation when cultured on Matrigel control substrates at the same time point. These results indicate that conjugation of bioactive peptides to these hydrogel substrates significantly influenced endothelial cell behavior in cultures but with differential responses between HUVECs and GEnCs.
机译:基底膜是一种专用的细胞外基质底物,其负责和维持上皮和内皮结构。工程化的基底膜水凝胶系统具有通过允许精确调谐基板或基质生物化学和生物物理性质来推进细胞 - 细胞和细胞基质相互作用的可能性。在该研究中,我们开发了具有共轭生物活性肽的可调谐水凝胶底物,以通过内皮细胞调节细胞结合和生长因子信号传导。通过使用聚(乙二醇)交联剂至共价交联明胶聚合物并同时将水粘蛋白衍生的yigsr肽或血管内皮生长因子(VEGF)与明胶缀合物形成水凝胶形成。流变表征揭示了在测试制剂上具有相似刚度的水凝胶的快速形成,溶胀分析证明了水凝胶中肽和交联剂浓度的依赖性。在水凝胶底物上培养的细胞中磷酸化的VEGF受体2的水平显示,虽然人的脐静脉内皮细胞(HUVECS)响应QK肽的可溶性和共轭形式,但是条件永生化的人肾小球内皮细胞(GENCS)仅对共轭作出反应肽的呈递。此外,当在5天后在yigsr-和QK缀合的水凝胶底物上培养时,Huvecs在基因表达中表现出最大的上调,当在Matrigel对照衬底上同时培养时,Gencs表现出最大的上调。这些结果表明,生物活性肽与这些水凝胶基材的缀合显着影响培养物中的内皮细胞行为,但在Huvecs和Gencs之间进行差异反应。

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