Centre of Polymer Systems, University Institute, Tomas Bata University in Zlin, Zlin, 76001, Czech Republic.
Institute of Hydrodynamics of the Czech Academy of Sciences, Prague 6, 16672, Czech Republic.
J Biomed Mater Res B Appl Biomater. 2019 Oct;107(7):2378-2387. doi: 10.1002/jbm.b.34331. Epub 2019 Jan 28.
Poly(lactic acid)-block-poly(oxirane)s (PLA-b-POE) of various compositions were prepared using a one-pot approach and then extended in a reaction with l-lysine diethyl ester diisocyanate, thereby forming polyester-ether-urethanes (PEU) with prolonged chains and units with increased degradability. The PEUs are processed by electrospinning to prepare degradable nanofibrous sheet materials with and without encapsulating the antibiotic Vancomycin (VAC). PLA block isomerism and POE blocks oligomeric content (1000 g/mol) affect the thermal properties, processability, nanofibrous sheet morphology, abiotic degradation, cytocompatibility, and encapsulated antibiotic release rate of prepared PEUs. Therefore, our findings provide an effective approach to tuning the functional properties of these advanced biocompatible materials. © 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 2378-2387, 2019.
采用一锅法制备了不同组成的聚(乳酸)-嵌段-聚(氧化乙烯)(PLA-b-POE),然后与 l-赖氨酸二乙酯二异氰酸酯进行扩展反应,从而形成具有延长链和增加可降解性的聚酯-醚-尿烷(PEU)。通过静电纺丝处理这些 PEU,制备了具有和不具有封装抗生素万古霉素(VAC)的可生物降解纳米纤维片状材料。PLA 嵌段的立体异构和 POE 嵌段的低聚物含量(1000g/mol)影响所制备的 PEU 的热性能、可加工性、纳米纤维片形态、非生物降解性、细胞相容性和封装抗生素释放速率。因此,我们的研究结果为调整这些先进的生物相容性材料的功能特性提供了一种有效的方法。© 2019 Wiley Periodicals, Inc. J 生物医学材料研究杂志 B:应用生物材料 107B:2378-2387, 2019.