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超临界流体技术在眼科创新医疗器械开发中的应用:载药人工晶状体减轻后发性白内障。

Supercritical fluid technology for the development of innovative ophthalmic medical devices: Drug loaded intraocular lenses to mitigate posterior capsule opacification.

机构信息

Aix Marseille Univ, CNRS, Centrale Marseille, M2P2, Marseille, France.

Aix Marseille Univ, CNRS, Centrale Marseille, M2P2, Marseille, France.

出版信息

Eur J Pharm Biopharm. 2020 Apr;149:248-256. doi: 10.1016/j.ejpb.2020.02.011. Epub 2020 Feb 26.

DOI:10.1016/j.ejpb.2020.02.011
PMID:32112896
Abstract

Supercritical impregnation technology was applied to load acrylic intraocular lenses (IOLs) with methotrexate to produce a sustained drug delivery device to mitigate posterior capsule opacification. Drug release kinetics were studied in vitro and used to determine the drug loading. Loaded IOLs and control IOLs treated under the same operating conditions, but without drug, were implanted ex vivo in human donor capsular bags. The typical cell growth was observed and immunofluorescence staining of three common fibrosis markers, fibronectin, F-actin and α-smooth muscle actin was carried out. Transparent IOLs presenting a sustained release of methotrexate for more than 80 days were produced. Drug loading varying between 0.43 and 0.75 ± 0.03 µg·mg were obtained when varying the supercritical impregnation pressure (8 and 25 MPa) and duration (30 and 240 min) at 308 K. The use of ethanol (5 mol%) as a co-solvent did not influence the impregnation efficiency and was even unfavorable at certain conditions. Even if the implantation of methotrexate loaded IOLs did not lead to a statistically significant variation in the duration required for a full cell coverage of the posterior capsule in the human capsular bag model, it was shown to reduce fibrosis by inhibiting epithelial-mesenchymal transformation. The innovative application presented has the potential to gain clinical relevance.

摘要

超临界浸渍技术被应用于载有甲氨蝶呤的丙烯酸人工晶状体(IOL)中,以产生一种持续药物输送装置来减轻后囊混浊。在体外研究了药物释放动力学,并用于确定药物负载。在相同的操作条件下,将负载 IOL 和对照 IOL(未经药物处理)植入人供体囊袋中进行离体实验。观察到典型的细胞生长,并对三种常见纤维化标志物,即纤维连接蛋白、F-肌动蛋白和α-平滑肌肌动蛋白进行免疫荧光染色。制备出具有超过 80 天持续释放甲氨蝶呤的透明 IOL。当在 308 K 时改变超临界浸渍压力(8 和 25 MPa)和持续时间(30 和 240 min)时,可获得 0.43 至 0.75±0.03µg·mg 之间的药物负载。使用乙醇(5mol%)作为共溶剂不会影响浸渍效率,甚至在某些条件下是不利的。即使在人囊袋模型中,植入载有甲氨蝶呤的 IOL 不会导致完全覆盖后囊所需的时间发生统计学上的显著变化,但它通过抑制上皮-间充质转化来显示出减少纤维化的作用。所提出的创新应用具有获得临床相关性的潜力。

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