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Polyurethane/Polylactide-Blend Films Doped with Zinc Ions for the Growth and Expansion of Human Olfactory Ensheathing Cells (OECs) and Adipose-Derived Mesenchymal Stromal Stem Cells (ASCs) for Regenerative Medicine Applications

机译:掺有锌离子的聚氨酯/聚乳酸混合薄膜用于人类嗅鞘细胞(OEC)和脂肪来源的间充质基质干细胞(ASC)的生长和扩展用于再生医学应用

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摘要

Polymeric biomaterials based on polyurethane and polylactide blends are promising candidates for regenerative medicine applications as biocompatible, bioresorbable carriers. In current research we showed that 80/20 polyurethane/polylactide blends (PU/PLDL) with confirmed biological properties in vitro may be further improved by the addition of ZnO nanoparticles for the delivery of bioactive zinc oxide for cells. The PU/PLDL blends were doped with different concentrations of ZnO (0.001%, 0.01%, 0.05%) and undertaken for in vitro biological evaluation using human adipose stromal stem cells (ASCs) and olfactory ensheathing cells (OECs). The addition of 0.001% of ZnO to the biomaterials positively influenced the morphology, proliferation, and phenotype of cells cultured on the scaffolds. Moreover, the analysis of oxidative stress markers revealed that 0.001% of ZnO added to the material decreased the stress level in both cell lines. In addition, the levels of neural-specific genes were upregulated in OECs when cultured on sample 0.001 ZnO, while the apoptosis-related genes were downregulated in OECs and ASCs in the same group. Therefore, we showed that PU/PLDL blends doped with 0.001% of ZnO exert beneficial influence on ASCs and OECs in vitro and they may be considered for future applications in the field of regenerative medicine.
机译:基于聚氨酯和聚丙交酯共混物的聚合物生物材料作为生物相容性,生物可吸收性载体,有望在再生医学中应用。在当前的研究中,我们表明,通过添加ZnO纳米颗粒为细胞递送生物活性氧化锌,可以进一步改善体外具有已确认的生物学特性的80/20聚氨酯/聚丙交酯混合物(PU / PLDL)。 PU / PLDL共混物掺有不同浓度的ZnO(0.001%,0.01%,0.05%),并使用人脂肪基质干细胞(ASC)和嗅鞘细胞(OEC)进行体外生物学评估。向生物材料中添加0.001%的ZnO可以积极影响在支架上培养的细胞的形态,增殖和表型。此外,对氧化应激标记的分析表明,添加到该材料中的0.001%ZnO降低了两种细胞系的应激水平。此外,在同一组中,当在样品0.001 ZnO上培养时,OEC中神经特异性基因的水平被上调,而凋亡相关基因在OEC和ASC中被下调。因此,我们表明掺有0.001%ZnO的PU / PLDL共混物在体外对ASC和OEC具有有益的影响,它们可能被考虑在再生医学领域中的未来应用。

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