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Electrospun Fibers and Sorbents as a Possible Basis for Effective Composite Wound Dressings

机译:电纺纤维和吸收剂可能是有效的复合伤口敷料的基础

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摘要

Skin burns and ulcers are considered hard-to-heal wounds due to their high infection risk. For this reason, designing new options for wound dressings is a growing need. The objective of this work is to investigate the properties of poly (ε-caprolactone)/poly (vinyl-pyrrolidone) (PCL/PVP) microfibers produced via electrospinning along with sorbents loaded with Argovit™ silver nanoparticles (Ag-Si/Al O ) as constituent components for composite wound dressings. The physicochemical properties of the fibers and sorbents were characterized using scanning electron microscopy (SEM), differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR) and inductively coupled plasma optical emission spectroscopy (ICP-OES). The mechanical properties of the fibers were also evaluated. The results of this work showed that the tested fibrous scaffolds have melting temperatures suitable for wound dressings design (58–60 °C). In addition, they demonstrated to be stable even after seven days in physiological solution, showing no macroscopic damage due to PVP release at the microscopic scale. Pelletized sorbents with the higher particle size demonstrated to have the best water uptake capabilities. Both, fibers and sorbents showed antimicrobial activity against Gram-negative bacteria and , Gram-positive and the fungus . The best physicochemical properties were obtained with a scaffold produced with a PCL/PVP ratio of 85:15, this polymeric scaffold demonstrated the most antimicrobial activity without affecting the cell viability of human fibroblast. Pelletized Ag/Si-Al O -3 sorbent possessed the best water uptake capability and the higher antimicrobial activity, over time between all the sorbents tested. The combination of PCL/PVP 85:15 microfibers with the chosen Ag/Si-Al O -3 sorbent will be used in the following work for creation of wound dressings possessing exudate retention, biocompatibility and antimicrobial activity.
机译:皮肤灼伤和溃疡由于感染风险高,被认为是难以愈合的伤口。由于这个原因,为伤口敷料设计新的选择的需求日益增长。这项工作的目的是研究通过静电纺丝制备的聚(ε-己内酯)/聚(乙烯基-吡咯烷酮)(PCL / PVP)超细纤维以及负载有Argovit™银纳米颗粒(Ag-Si / Al O)的吸附剂的性能。作为复合伤口敷料的组成成分。使用扫描电子显微镜(SEM),差示扫描量热法(DSC),傅里叶变换红外光谱(FTIR)和电感耦合等离子体发射光谱(ICP-OES)对纤维和吸附剂的理化性质进行表征。还评估了纤维的机械性能。这项工作的结果表明,测试的纤维支架的熔化温度适合伤口敷料的设计(58-60°C)。此外,它们在生理溶液中即使在7天后仍表现出稳定的状态,没有显示由于PVP在微观尺度上释放而引起的宏观损害。具有较高粒径的粒化吸附剂被证明具有最佳的吸水能力。纤维和吸附剂均显示出对革兰氏阴性菌和革兰氏阳性菌和真菌的抗菌活性。用PCL / PVP比为85:15产生的支架可获得最佳的理化性质,该聚合物支架表现出最大的抗菌活性,而不会影响人类成纤维细胞的细胞活力。在所有测试的吸附剂之间,随着时间的推移,粒化的Ag / Si-Al O -3吸附剂具有最佳的吸水能力和较高的抗菌活性。 PCL / PVP 85:15超细纤维与所选的Ag / Si-Al O -3吸附剂的组合将用于以下工作,以创建具有渗出物保留,生物相容性和抗菌活性的伤口敷料。

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