Department of Pharmaceutical Sciences, Texas A&M Health Sciences Center, College Station, TX 77845, USA.
Department of Pharmaceutical Sciences, Texas A&M Health Sciences Center, College Station, TX 77845, USA.
Adv Drug Deliv Rev. 2016 Dec 15;107:47-59. doi: 10.1016/j.addr.2016.06.014. Epub 2016 Jun 29.
Poly(lactic acid) (PLA) has become a "material of choice" in biomedical applications for its ability to fulfill complex needs that typically include properties such as biocompatibility, biodegradability, mechanical strength, and processability. Despite the advantages of pure PLA in a wider spectrum of applications, it is limited by its hydrophobicity, low impact toughness, and slow degradation rate. Blending PLA with other polymers offers a convenient option to enhance its properties or generate novel properties for target applications without the need to develop new materials. PLA blends with different natural and synthetic polymers have been developed by solvent and melt blending techniques and further processed based on end-use applications. A variety of PLA blends has been explored for biomedical applications such as drug delivery, implants, sutures, and tissue engineering. This review discusses the opportunities for PLA blends in the biomedical arena, including the overview of blending and postblend processing techniques and the applications of PLA blends currently in use and under development.
聚乳酸(PLA)因其能够满足通常包括生物相容性、可生物降解性、机械强度和可加工性等特性的复杂需求,已成为生物医学应用中的“首选材料”。尽管纯 PLA 在更广泛的应用中具有优势,但它受到疏水性、低冲击韧性和缓慢降解速率的限制。将 PLA 与其他聚合物混合提供了一种方便的选择,可以在无需开发新材料的情况下增强其性能或为目标应用产生新的性能。通过溶剂和熔融混合技术开发了 PLA 与不同天然和合成聚合物的共混物,并根据最终用途应用进一步进行加工。已经探索了多种 PLA 共混物在药物输送、植入物、缝线和组织工程等生物医学应用中的应用。本文综述了 PLA 共混物在生物医学领域的应用机会,包括共混和共混后加工技术概述以及目前正在使用和开发中的 PLA 共混物的应用。