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Alginate Sulfates Mitigates Binding Kinetics of Proangiogenic Growth Factors with Receptors toward Revascularization

机译:藻酸盐硫酸盐可减轻血管生成生长因子与受体对血运重建的结合动力学。

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摘要

Ever since proangiogenic growth factors have been used as a vascular medicine to treat tissue ischemia, efforts have been increasingly made to develop a method to enhance efficacy of growth factors in recreating microvascular networks, especially at low dose. To this end, we hypothesized that polysaccharides substituted with sulfate groups would amplify growth factor receptor activation and stimulate phenotypic activities of endothelial cells involved in neovascularization. We examined this hypothesis by modifying alginate with a controlled number of sulfates and using it to derive a complex with vascular endothelial growth factor (VEGF), as confirmed with fluorescence resonance energy transfer (FRET) assay. Compared with the bare VEGF and with a mixture of VEGF and unmodified alginates, the VEGF complexed with alginate sulfates significantly reduced the dissociation rate with the VEGFR-2, elevated VEGFR-2 phosphorylation level, and increased the number of endothelial sprouts in vitro. Furthermore, the VEGF-alginate sulfate complex improved recovery of perfusion in an ischemic hindlimb of a mouse due to the increase of the capillary density. Overall, this study not only demonstrates an important cofactor of VEGF but also uncovers an underlying mechanism by which the cofactor mitigates the VEGF-induced signaling involved in the binding kinetics and activation of VEGFR. We therefore believe that the results of this study will be highly useful in improving the therapeutic efficacy of various growth factors and expediting their uses in clinical treatments of wounds and tissue defects.
机译:自从促血管生成生长因子已被用作治疗组织缺血的血管药物以来,人们一直在努力开发一种增强生长因子在重建微血管网络,特别是在低剂量下重建微血管网络的功效的方法。为此,我们假设被硫酸盐基团取代的多糖会放大生长因子受体的激活并刺激参与新血管形成的内皮细胞的表型活性。我们通过控制数量的硫酸盐修饰藻酸盐,并用它衍生出具有血管内皮生长因子(VEGF)的复合物,来检验这一假设,这一点已通过荧光共振能量转移(FRET)分析得以证实。与裸露的VEGF以及VEGF和未修饰的藻酸盐的混合物相比,与藻酸盐硫酸盐复合的VEGF显着降低了与VEGFR-2的解离速率,提高了VEGFR-2的磷酸化水平,并增加了体外内皮芽的数量。此外,由于毛细血管密度的增加,VEGF-藻酸盐硫酸盐复合物改善了小鼠缺血后肢的灌注恢复。总的来说,这项研究不仅证明了VEGF的重要辅助因子,而且还揭示了辅助因子减轻VEGF诱导的与VEGFR结合动力学和激活有关的信号传导的潜在机制。因此,我们认为,这项研究的结果对于改善各种生长因子的治疗功效,并加速其在伤口和组织缺损的临床治疗中的应用将非常有用。

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