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Modifying Poly(L-lactic acid) Matrix Film Properties with High Loaded Poly(ethylene glycol)

机译:用高负载聚乙二醇改性聚(L-乳酸)基膜性能

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摘要

Poly(L-lactic acid) (PLA) is a biodegradable and bioabsorbable polymer which has many potential uses. However, PLA shows the poor toughness, slow degradation rate and relatively hydrophobic. Poly(ethylene glycol) (PEG) is widely used as a plasticizer and of great interest because it presents outstanding properties, e.g. solubility in water and also in some organic solvents, lack of toxicity and absence of antigenicity and immunogenicity, which are essential for biomedical applications. The aim of this study was to investigate the ability of high amount PEG 400 to improve the characteristics of PLA matrix film. PLA matrix films were prepared using a solvent casting method and their various properties were investigated. Mechanical properties were determined with texture analyzer. Contact angle and surface free energy were measured using the goniometer. From the mechanical properties evaluated (tensile strength (TS) and elongation at break (E)), all plasticized PLA films exhibited the softer behavior and the plasticized PLA films with 150 % PEG 400 indicated the higher % elongation at break than pure PLA, significantly. The contact angle and surface free energy values indicated that PEG 400 could improve the wettability of solvents and also increase % water sorption and % weight loss with as dose dependent. Surprisingly, SEM photographs revealed more porous structure as the higher amount PEG 400 was incorporated in PLA film. This porous structure and density of developed plasticized PLA film could be modified with temperature change technique. Parameters affecting the 3-D porous plasticized PLA matrix were revealed in this study. The optimum condition for producing the continuous 3-D porous plasticized PLA matrix was obtained. This porous topography in PLA matrix film will be applied further as material in tissue engineering and drug delivery systems.
机译:聚(L-乳酸)(PLA)是一种具有许多潜在用途的可生物降解和可生物吸收的聚合物。然而,PLA显示出差的韧性,缓慢的降解速率和相对疏水性。聚(乙二醇)(PEG)被广泛地用作增塑剂,并且由于其表现出优异的性能,例如具有优异的性能而备受关注。在水中以及在某些有机溶剂中的溶解性,没有毒性,没有抗原性和免疫原性,这对于生物医学应用是必不可少的。这项研究的目的是研究大量PEG 400改善PLA基质薄膜特性的能力。使用溶剂浇铸法制备PLA基质薄膜,并研究其各种性能。用质地分析仪测定机械性能。使用测角仪测量接触角和表面自由能。从评估的机械性能(抗张强度(TS)和断裂伸长率(E))来看,所有增塑的PLA薄膜均表现出较软的行为,而含150%PEG 400的增塑的PLA薄膜则显示出比纯PLA更高的断裂伸长%。 。接触角和表面自由能值表明PEG 400可以改善溶剂的润湿性,并且还可以增加%的吸水率和%的重量损失,且取决于剂量。出人意料的是,随着更高数量的PEG 400加入PLA膜中,SEM照片显示出更多的多孔结构。所开发的增塑的PLA膜的这种多孔结构和密度可以通过温度变化技术进行修改。这项研究揭示了影响3-D多孔增塑PLA基质的参数。获得了生产连续3-D多孔增塑PLA基体的最佳条件。 PLA基质薄膜中的这种多孔形貌将进一步用作组织工程和药物输送系统中的材料。

著录项

  • 来源
  • 会议地点 Bangkok(TH)
  • 作者单位

    Department of Pharmaceutical Technology, Faculty of Pharmacy, Silpakorn University, Nakhon Pathom, 73000 Thailand;

    Department of Pharmaceutical Technology, Faculty of Pharmacy, Silpakorn University, Nakhon Pathom, 73000 Thailand;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Modifying; PLA; Film; PEG;

    机译:修改;解放军电影;聚乙二醇;
  • 入库时间 2022-08-26 14:01:23

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