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首页> 外文期刊>RSC Advances >Biocompatible succinic acid-based polyesters for potential biomedical applications: fungal biofilm inhibition and mesenchymal stem cell growth
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Biocompatible succinic acid-based polyesters for potential biomedical applications: fungal biofilm inhibition and mesenchymal stem cell growth

机译:生物相容性琥珀酸基聚酯在生物医学中的潜在应用:真菌生物膜抑制和间充质干细胞生长

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摘要

Herein, we present the intrinsic property of well-known polyesters [poly(alkene succinates)], as Candida albicans and Candida tropicalis biofilm inhibitors with potential to substantially reduce the incidence of device-associated infections in, e.g., indwelling catheters and sutures. These new biopolymer applications, either for manufacturing or coating medical devices, present innovative features such as: simple and cheap preparation, easy scaling-up, good mechanical and thermal resistance properties, and antibiofilm ability without any specific surface functionalization or antimicrobial agent encapsulation. Furthermore, the polyesters are shown to be highly biocompatible, promote human mesenchymal stem cell (hMSC) attachment and proliferation, inducing morphological changes, which are dependent on the polymer structural characteristics, making them promising candidates for materials in specialized medical devices and in the tissue engineering field.
机译:在此,我们介绍了作为白色假丝酵母和热带假丝酵母生物膜抑制剂的众所周知的聚酯[聚(琥珀酸琥珀酸酯)]的内在特性,它们具有潜在地显着降低设备相关感染的发生率的潜力,例如,留置导管和缝合线。这些新的生物聚合物应用,无论是用于制造还是用于涂覆医疗器械,都具有创新的功能,例如:简单且廉价的制备,易于放大,良好的机械和耐热性能以及具有抗生物膜能力,而无需任何特定的表面功能化或抗菌剂封装。此外,聚酯还显示出高度的生物相容性,可促进人间充质干细胞(hMSC)的附着和增殖,并诱导形态变化,这些变化取决于聚合物的结构特征,使其有望成为专门医疗设备和组织中材料的候选者工程领域。

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