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载丝裂霉素 C 的蛋白石页岩载药微球涂层青光眼引流装置抑制滤过泡纤维化。

Glaucoma Drainage Device Coated with Mitomycin C Loaded Opal Shale Microparticles to Inhibit Bleb Fibrosis.

机构信息

Department of Ophthalmology , The Second Affiliated Hospital of Harbin Medical University , Harbin , Heilongjiang 150081 , P. R. China.

The Key Laboratory of Myocardial Ischemia , Harbin Medical University, Ministry of Education , Harbin , Heilongjiang Province 150081 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2019 Mar 13;11(10):10244-10253. doi: 10.1021/acsami.8b18551. Epub 2019 Feb 11.

DOI:10.1021/acsami.8b18551
PMID:30689341
Abstract

Excessive fibrosis is the topmost factor for the defeat of surgical glaucoma drainage device (GDD) implantation. Adjuvant drug approaches are promising to help reduce the scar formation and excessive fibrosis. Opal shale (OS), as a natural state and noncrystalline silica substance with poriferous nature and strong adsorbability, is highly likely to undertake drug loading and delivery. Here, we employed OS microparticles (MPs) by ultrasound and centrifugation and presented an innovative and improved GDD coated with OS MPs, which were loaded with mitomycin C (MMC). MMC-loaded OS MPs were physically absorbed on the Ahmed glaucoma valve surface through OS' adsorbability. About 5.51 μg of MMC was loaded on the modified Ahmed glaucoma valve and can be released for 18 days in vitro. MMC-loaded OS MPs inhibited fibroblast proliferation and showed low toxicity to primary Tenon's fibroblasts. The ameliorated drainage device was well tolerated and effective in reducing the fibrous reaction in vivo. Hence, our study constructed an improved Ahmed glaucoma valve using OS MPs without disturbing aqueous humor drainage pattern over the valve surface. The modified Ahmed glaucoma valve successfully alleviated scar tissue formation after GDD implantation surgery.

摘要

过度纤维化是手术青光眼引流装置 (GDD) 植入失败的最主要因素。辅助药物方法有希望帮助减少疤痕形成和过度纤维化。蛋白石页岩 (OS) 是一种天然的无定形硅质物质,具有多孔性和强吸附性,很有可能承担药物负载和输送。在这里,我们通过超声和离心法制备了 OS 微粒 (MPs),并提出了一种创新的、改良的 GDD,其表面涂有 OS MPs,负载丝裂霉素 C (MMC)。MMC 负载的 OS MPs 通过 OS 的吸附性物理吸附在 Ahmed 青光眼阀表面。约有 5.51μg 的 MMC 被负载在改良的 Ahmed 青光眼阀上,并可在体外释放 18 天。MMC 负载的 OS MPs 抑制成纤维细胞增殖,对原代 Tenon 氏成纤维细胞显示出低毒性。改良后的引流装置耐受性良好,能有效减轻体内纤维反应。因此,我们的研究使用 OS MPs 构建了一种改良的 Ahmed 青光眼阀,而不会干扰阀表面的房水引流模式。改良后的 Ahmed 青光眼阀在 GDD 植入手术后成功缓解了疤痕组织的形成。

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