首页> 外文期刊>Journal of cataract and refractive surgery >Uveal and capsular biocompatibility of an intraocular lens with a hydrophilic anterior surface and a hydrophobic posterior surface.
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Uveal and capsular biocompatibility of an intraocular lens with a hydrophilic anterior surface and a hydrophobic posterior surface.

机译:具有亲水性前表面和疏水性后表面的人工晶状体的葡萄膜和囊的生物相容性。

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PURPOSE: To evaluate the uveal and capsular biocompatibility of intraocular lenses (IOLs) with a hydrophilic anterior surface and a hydrophobic posterior surface in a rabbit model. SETTING: Eye Center, Affiliated Second Hospital, College of Medicine, Zhejiang University, Hangzhou, China. METHODS: Modified silicone IOLs were produced by grafting 2-methacryloyloxyethyl phosphorylcholine (MPC) onto the anterior IOL surface using a plasma technique. A contact-angle test characterized the hydrophilicity of the IOL surface; physical and optical properties were determined by State Food and Drug Administration (SFDA) standards. Rabbits had phacomulsification and implantation a modified silicone IOL, a control silicone IOL, or a hydrogel IOL. Postoperative inflammation was assessed by aqueous flare measurement, and PCO was evaluated by software analysis. Three months after surgery, attached cells on extracted IOLs were evaluated by light microscopy; PCO was evaluated by Miyake-Apple technique. Histologic sections of globes were used to assess lens epithelial cells (LECs) and extracellular matrix in the capsular bag. RESULTS: Contact angle data showed the MPC-modified IOL had a hydrophilic anterior surface and hydrophobic posterior surface. The properties of the modified IOLs met SFDA standards. There was no statistical difference in aqueous flare between the IOL groups at any time. The modified and control IOLs had less PCO than the hydrogel IOLs (P<.05). There were fewer cells on modified IOLs than on silicone IOLs (P<.05). The LECs and cortical remnants on modified IOLs had a rapid, fibroblastic appearance at the optic periphery; the center was clear. CONCLUSIONS: Results suggest that the MPC-modified IOL has excellent uveal and capsule biocompatibility from hydrophilic anterior surface and hydrophobic posterior surface properties, respectively.
机译:目的:评估兔模型中具有亲水性前表面和疏水性后表面的人工晶状体(IOL)的葡萄膜和囊膜生物相容性。单位:浙江大学医学院附属第二医院眼科中心,杭州方法:采用等离子技术将2-甲基丙烯酰氧基乙基磷酰胆碱(MPC)接枝到IOL前表面上,从而制备出改性的有机硅IOL。接触角测试表征了IOL表面的亲水性。物理和光学性质由国家食品药品监督管理局(SFDA)确定。兔被超声乳化并植入了改良的有机硅IOL,对照有机硅IOL或水凝胶IOL。术后炎症通过房水耀斑测量进行评估,PCO通过软件分析进行评估。手术后三个月,通过光学显微镜评估提取的IOL上的附着细胞。通过Miyake-Apple技术评估PCO。眼球的组织学切片用于评估囊袋中的晶状体上皮细胞(LEC)和细胞外基质。结果:接触角数据显示MPC修饰的IOL具有亲水性的前表面和疏水性的后表面。修改后的IOL的特性符合SFDA标准。在任何时候,IOL组之间的房角耀斑没有统计学差异。改性的和对照的IOL比水凝胶IOL具有更少的PCO(P <.05)。与有机硅IOL相比,修饰IOL上的细胞更少(P <.05)。改良的IOL上的LEC和皮层残余物在视神经周围具有快速的成纤维细胞外观。中心很清楚。结论:结果表明,MPC修饰的IOL从亲水性前表面和疏水性后表面的性质分别具有优异的葡萄膜和胶囊生物相容性。

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