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载有西罗莫司的聚合物微球涂层的长效支架的体外药物释放特征分析。

In vitro drug release profiling of Sirolimus polymeric microparticles coated long-acting stents.

机构信息

Department of Pharmaceutical Sciences and Technology, Institute of Chemical Technology, Matunga (E), Mumbai 400 019, Maharashtra, India.

Sahajanand Medical Technologies Limited, Gujarat 395004, India.

出版信息

Int J Pharm. 2024 Oct 25;664:124572. doi: 10.1016/j.ijpharm.2024.124572. Epub 2024 Aug 17.

Abstract

In the realm of arterial disease interventions, drug-eluting stents (DES) have become a vital therapeutic choice in preventing atherosclerotic plaque formation and restenosis and facilitating vessel healing. Sirolimus-encapsulated poly Lactic-co-Glycolic acid (PLGA) Microparticles (MPs) were developed using solvent evaporation. MPs were freeze-dried with a cryoprotectant and coated on the stent surface using an efficient and reproducible nitrogen-assisted spray coating technique. The MPs displayed a uniform distribution particle size of 4.38 ± 1.1 μm, span value of 0.88 ± 0.02, coating mass transfer efficiency of 13.45 ± 1.1 % on the stent, and a coating time of ≤ 2 min per stent. Post sterilization, the particle size and morphology of the coated stents remained unchanged. Accelerated in vitro drug release profiles were evaluated under different conditions, indicating significant influences based on dissolution methods ranging from 28.2 %±4.3 %, 42.5 %±5.3 %, 76.6 %±4.7 %, and 84.25 %±3.1 % for dialysis bag (DB), vessel simulating flow-through cell (vFTC), flow-through cell (FTC), and sample and separate (SS) technique respectively for 48 h. The drug release mechanism from the coated stents is governed by the combination of the Korsmeyer Peppas and Higuchi models. The developed dissolution method exhibited discriminative effectiveness when evaluated with critical formulation attributes and process parameter variations. The 48 h accelerated drug release studies correlated well with the 6-month real-time release rate with an R value of 0.9142 and Pearson's R2 of 0.9561. Ex-vivo studies demonstrated the permeation of MPs into artery tissues. Stability studies confirmed that MPs coated stents maintained desired properties at 4 °C and 30 °C/65 % RH for 6 months. Overall, these findings contribute to advancing stent technology, suggesting the potential for improvement of arterial interventions and enhanced patient outcomes.

摘要

在动脉疾病干预领域,药物洗脱支架(DES)已成为预防动脉粥样硬化斑块形成和再狭窄以及促进血管愈合的重要治疗选择。西罗莫司包封的聚乳酸-共-乙醇酸(PLGA)微球(MPs)是使用溶剂蒸发法开发的。使用高效且可重复的氮气辅助喷雾涂层技术,将冷冻干燥的 MPs 涂覆在支架表面。MPs 的粒径分布均匀,粒径为 4.38±1.1μm,跨度值为 0.88±0.02,在支架上的涂层质量传递效率为 13.45±1.1%,每根支架的涂层时间小于 2 分钟。经过灭菌后,涂层支架的粒径和形态保持不变。在不同条件下评估了加速体外药物释放曲线,结果表明,根据溶解方法的不同,药物释放量有显著影响,范围从 28.2%±4.3%、42.5%±5.3%、76.6%±4.7%和 84.25%±3.1%,分别用于透析袋(DB)、血管模拟流通细胞(vFTC)、流通细胞(FTC)和样品分离(SS)技术,在 48 小时内。涂层支架的药物释放机制由 Korsmeyer Peppas 和 Higuchi 模型组合控制。所开发的溶解方法在评估关键制剂属性和工艺参数变化时表现出了良好的区分效果。48 小时加速药物释放研究与 6 个月实时释放率相关性良好,相关系数 R 值为 0.9142,皮尔逊 R2 值为 0.9561。离体研究表明 MPs 能够渗透到动脉组织中。稳定性研究证实,MPs 涂层支架在 4°C 和 30°C/65%RH 下可在 6 个月内保持所需的特性。总的来说,这些发现有助于推进支架技术的发展,表明在改善动脉介入治疗和提高患者治疗效果方面具有潜力。

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