首页> 美国卫生研究院文献>Nanomaterials >The Effect of a Polyester Nanofibrous Membrane with a Fibrin-Platelet Lysate Coating on Keratinocytes and Endothelial Cells in a Co-Culture System
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The Effect of a Polyester Nanofibrous Membrane with a Fibrin-Platelet Lysate Coating on Keratinocytes and Endothelial Cells in a Co-Culture System

机译:纤维蛋白 - 血小板裂解物涂层在共培养系统中纤维蛋白 - 血小板裂解物涂层的影响

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摘要

Chronic wounds affect millions of patients worldwide, and it is estimated that this number will increase steadily in the future due to population ageing. The research of new therapeutic approaches to wound healing includes the development of nanofibrous meshes and the use of platelet lysate (PL) to stimulate skin regeneration. This study considers a combination of a degradable electrospun nanofibrous blend of poly(L-lactide-co-ε-caprolactone) and poly(ε-caprolactone) (PLCL/PCL) membranes (NF) and fibrin loaded with various concentrations of PL aimed at the development of bioactive skin wound healing dressings. The cytocompatibility of the NF membranes, as well as the effect of PL, was evaluated in both monocultures and co-cultures of human keratinocytes and human endothelial cells. We determined that the keratinocytes were able to adhere on all the membranes, and their increased proliferation and differentiation was observed on the membranes that contained fibrin with at least 50% of PL (Fbg + PL) after 14 days. With respect to the co-culture experiments, the membranes with fibrin with 20% of PL were observed to enhance the metabolic activity of endothelial cells and their migration, and the proliferation and differentiation of keratinocytes. The results suggest that the newly developed NF combined with fibrin and PL, described in the study, provides a promising dressing for chronic wound healing purposes.
机译:慢性伤口影响全球数百万患者,据估计,由于人口老龄化,未来将稳步增长。新治疗方法对伤口愈合的研究包括纳米纤维网眼的发育和使用血小板裂解物(PL)刺激皮肤再生。该研究考虑了聚(L-丙交酯-Co-Caprolacterone)和聚(ε-己内酯)(PLCL / PCL)膜(NF)和纤维蛋白的可降解电纺纳米纤维混合物的组合,其旨在具有各种浓度的PL型生物活性皮肤伤口愈合敷料的发展。在人角质形成细胞和人内皮细胞的单苗圃和共培养中评估NF膜的细胞膜相容性以及PL的效果。我们确定角质形成细胞能够粘附在所有膜上,并且在14天后含有至少50%PL(FBG + PL)的纤维蛋白的膜上观察到它们增加的增殖和分化。关于共培养实验,观察到具有20%PL的纤维蛋白的膜,以增强内皮细胞的代谢活性及其迁移,以及角质形成细胞的增殖和分化。结果表明,在研究中描述的新开发的NF与纤维蛋白和PL相结合,为慢性伤口愈合目的提供了有希望的敷料。

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