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透明质酸稳定的载酮咯酸的聚乳酸-羟基乙酸共聚物/聚乳酸基微粒:制剂组成和乳化技术对颗粒特性及药物释放行为的影响

Ketorolac-Loaded PLGA-/PLA-Based Microparticles Stabilized by Hyaluronic Acid: Effects of Formulation Composition and Emulsification Technique on Particle Characteristics and Drug Release Behaviors.

作者信息

Wongrakpanich Amaraporn, Khunkitchai Nichakan, Achayawat Yanisa, Suksiriworapong Jiraphong

机构信息

Department of Pharmacy, Faculty of Pharmacy, Mahidol University, Bangkok 10400, Thailand.

Doctor of Pharmacy Program, Faculty of Pharmacy, Mahidol University, Bangkok 10400, Thailand.

出版信息

Polymers (Basel). 2023 Jan 4;15(2):266. doi: 10.3390/polym15020266.

Abstract

This study aimed to develop ketorolac microparticles stabilized by hyaluronic acid based on poly(lactide-co-glycolide) (PLGA), poly(lactide) (PLA), and their blend for further application in osteoarthritis. The polymer blend may provide tailored drug release and improved physicochemical characteristics. The microparticles were prepared by water-in-oil-in-water (w/o/w) double emulsion solvent evaporation using two emulsification techniques, probe sonication (PS) and high-speed stirring (HSS), to obtain the microparticles in different size ranges. The results revealed that the polymer composition and emulsification technique influenced the ketorolac microparticle characteristics. The PS technique provided significantly at least 20 times smaller average size (1.3-2.2 µm) and broader size distribution (1.5-8.5) than HSS (45.5-67.4 µm and 1.0-1.4, respectively). The encapsulation efficiency was influenced by the polymer composition and the emulsification technique, especially in the PLA microparticles. The DSC and XRD results suggested that the drug was compatible with and molecularly dissolved in the polymer matrix. Furthermore, most of the drug molecules existed in an amorphous form, and some in any crystalline form. All of the microparticles had biphasic drug release composed of the burst release within the first 2 h and the sustained release over 35 days. The obtained microparticles showed promise for further use in the treatment of osteoarthritis.

摘要

本研究旨在基于聚(丙交酯-乙交酯)(PLGA)、聚丙交酯(PLA)及其共混物开发由透明质酸稳定的酮咯酸微粒,以进一步应用于骨关节炎。聚合物共混物可提供定制的药物释放并改善理化特性。通过水包油包水(w/o/w)双乳液溶剂蒸发法,采用两种乳化技术,即探头超声处理(PS)和高速搅拌(HSS),制备微粒,以获得不同尺寸范围的微粒。结果表明,聚合物组成和乳化技术影响酮咯酸微粒的特性。PS技术提供的平均尺寸(1.3 - 2.2 µm)至少比HSS显著小20倍(分别为45.5 - 67.4 µm),且尺寸分布更宽(1.5 - 8.5)(HSS的尺寸分布为1.0 - 1.4)。包封率受聚合物组成和乳化技术的影响,尤其是在PLA微粒中。DSC和XRD结果表明,药物与聚合物基质相容并分子溶解于其中。此外,大多数药物分子以无定形形式存在,一些以结晶形式存在。所有微粒均具有双相药物释放,包括最初2小时内的突释和超过35天的缓释。所获得的微粒显示出在骨关节炎治疗中进一步应用的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80b8/9863719/4a44776fd6df/polymers-15-00266-g001.jpg

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