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Epidermal Growth Factor: Layered Silicate Nanocomposites for Tissue Regeneration

机译:表皮生长因子:用于组织再生的层状硅酸盐纳米复合材料

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摘要

Wound healing is a complex, multistep process that can be summarized into three stages, namely, hemostasis and inflammation, proliferation, and finally, tissue remodeling. Battlefield wound healing demands rapid hemostasis using clotting or cauterizing agents to immediately limit blood loss, but this occurs at the expense of proper tissue repair beyond hemostasis. Layered silicate clays such as kaolin and montmorillonite (MMT) have been previously shown to induce blood clotting due to their ability to form charged interactions with clotting factors. The charge characteristics of sodium MMT (Na-MMT) also enable functionalization with active biomolecules. Herein we functionalized Na-MMT with epidermal growth factor (EGF) via ion exchange reaction to create a nanocomposite (MMT-EGF) with approximately 0.004 EGF molecules per Na~+ exchange site and conduct biochemical analyses of keratinocytes after treatment with MMT-EGF. Our results demonstrate that EGF immobilized on MMT retains the ability to activate the epidermal growth factor receptor (EGRF), causing phosphorylation of the AKT and MEK1 pathways, as well as upregulation of its downstream target gene expression involved in cell growth and migration. This study also shows that like EGF, MMT-EGF treatment can stimulate cell migration in vitro, which is dependent on ERK1/2 phosphorylation.
机译:伤口愈合是一个复杂的多步骤过程,可以概括为三个阶段,即止血和炎症,增殖,最后是组织重塑。战场伤口愈合需要使用止血剂或烧灼剂迅速止血以立即限制失血,但这是以止血以外的适当组织修复为代价的。层状硅酸盐粘土,例如高岭土和蒙脱石(MMT),由于其与凝血因子形成带电相互作用的能力,已被证明可引起血液凝结。 MMT钠(Na-MMT)的电荷特性还可以使活性生物分子功能化。本文中,我们通过表皮生长因子(EGF)通过离子交换反应对Na-MMT进行功能化,以形成每个Na〜+交换位点具有约0.004 EGF分子的纳米复合材料(MMT-EGF),并在用MMT-EGF处理后对角质形成细胞进行生化分析。我们的结果表明,固定在MMT上的EGF保留了激活表皮生长因子受体(EGRF)的能力,从而导致AKT和MEK1途径的磷酸化,以及参与细胞生长和迁移的下游靶基因表达的上调。这项研究还表明,与EGF一样,MMT-EGF处理可以刺激体外细胞迁移,这依赖于ERK1 / 2磷酸化。

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