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Differential effects of cell adhesion modulus and VEGFR-2 inhibition on capillary network formation in synthetic hydrogel arrays

机译:细胞粘附模量和VEGFR-2抑制对合成水凝胶阵列中毛细管网络形成的不同影响

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摘要

Efficient biomaterial screening platforms can test a wide range of extracellular environments that modulate vascular growth. Here, we used synthetic hydrogel arrays to probe the combined effects of Cys-Arg-Gly-Asp-Ser (CRGDS) cell adhesion peptide concentration, shear modulus and vascular endothelial growth factor receptor 2 (VEGFR2) inhibition on human umbilical vein endothelial cell (HUVEC) viability, proliferation and tubulogenesis. HUVECs were encapsulated in degradable poly(ethylene glycol) (PEG) hydrogels with defined CRGDS concentration and shear modulus. VEGFR2 activity was modulated using the VEGFR2 inhibitor SU5416. We demonstrate that synergy exists between VEGFR2 activity and CRGDS ligand presentation in the context of maintaining HUVEC viability. However, excessive CRGDS disrupts this synergy. HUVEC proliferation significantly decreased with VEGFR2 inhibition and increased modulus, but did not vary monotonically with CRGDS concentration. Capillary-like structure (CLS) formation was highly modulated by CRGDS concentration and modulus, but was largely unaffected by VEGFR2 inhibition. We conclude that the characteristics of the ECM surrounding encapsulated HUVECs significantly influence cell viability, proliferation and CLS formation. Additionally, the ECM modulates the effects of VEGFR2 signaling, ranging from changing the effectiveness of synergistic interactions between integrins and VEGFR2 to determining whether VEGFR2 upregulates, downregulates or has no effect on proliferation and CLS formation.
机译:高效的生物材料筛选平台可以测试各种调节血管生长的细胞外环境。在这里,我们使用合成水凝胶阵列来探讨Cys-Arg-Gly-Asp-Ser(CRGDS)细胞粘附肽浓度,剪切模量和血管内皮生长因子受体2(VEGFR2)对人脐静脉内皮细胞( HUVEC)的活力,增殖和微管生成。 HUVEC被封装在具有确定的CRGDS浓度和剪切模量的可降解聚(乙二醇)(PEG)水凝胶中。使用VEGFR2抑制剂SU5416调节VEGFR2活性。我们证明在维持HUVEC生存力的背景下VEGFR2活性和CRGDS配体表现之间存在协同作用。但是,过多的CRGDS会破坏这种协同作用。 HUVEC增殖随着VEGFR2抑制和模量的增加而显着降低,但没有随CRGDS浓度单调变化。毛细管样结构(CLS)的形成受CRGDS浓度和模量的高度调节,但不受VEGFR2抑制的影响。我们得出结论,围绕封装的HUVEC的ECM的特征显着影响细胞活力,增殖和CLS形成。另外,ECM调节VEGFR2信号传导的作用,范围从改变整联蛋白与VEGFR2之间的协同相互作用的效力到确定VEGFR2是否上调,下调或对增殖和CLS形成没有影响。

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