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Ciprofloxacin-Modified Degradable Hybrid Polyurethane-Polylactide Porous Scaffolds Developed for Potential Use as an Antibacterial Scaffold for Regeneration of Skin

机译:环丙沙星修饰的可降解杂化聚氨酯-聚乳酸多孔支架被开发用作潜在的抗菌支架用于皮肤再生。

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摘要

The aim of the performed study was to fabricate an antibacterial and degradable scaffold that may be used in the field of skin regeneration. To reach the degradation criterion for the biocompatible polyurethane (PUR), obtained by using amorphous α,ω-dihydroxy(ethylene-butylene adipate) macrodiol (PEBA), was used and processed with so-called “fast-degradable” polymer polylactide (PLA) (5 or 10 wt %). To meet the antibacterial requirement obtained, hybrid PUR-PLA scaffolds (HPPS) were modified with ciprofloxacin (Cipro) (2 or 5 wt %) and the fluoroquinolone antibiotic inhibiting growth of bacteria, such as , , and , which are the main causes of wound infections. Performed studies showed that Cipro-modified HPPS, obtained by using 5% of PLA, possess suitable mechanical characteristics, morphology, degradation rates, and demanded antimicrobial properties to be further developed as potential scaffolds for skin tissue engineering.
机译:进行的研究的目的是制造可用于皮肤再生领域的抗菌和可降解支架。为了达到生物相容性聚氨酯(PUR)的降解标准,使用了无定形的α,ω-二羟基(己二酸亚乙基丁烯酯)大分子二醇(PEBA),并使用了所谓的“可快速降解”聚合物聚丙交酯(PLA)进行处理。 )(5或10 wt%)。为了满足获得的抗菌要求,用环丙沙星(Cipro)(2或5 wt%)和抑制细菌生长的氟喹诺酮抗生素(如,和)修饰了杂合的PUR-PLA支架(HPPS)。伤口感染。进行的研究表明,使用5%的PLA制备的Cipro修饰的HPPS具有合适的机械特性,形态,降解速率,并要求其抗菌性能可进一步开发为皮肤组织工程的潜在支架。

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