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An Innovative Intraocular Lens Surface Functionalization to Control Posterior Capsular Opacification

机译:一种创新的人工晶状体表面功能化,以控制后囊不透明化

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With the enhanced attachment to the surface functionalized IOL material, the LEC could form a thin layer to reconstitute the physiological condition as it in nature lens. This is corresponding to the proposal of PCO development control. In addition, the cells share similar spatial distribution and cell morphology to the hydrophobic material control, implying less chance to be transformed. On the other land, the surface functionalization keeps the original material properties for the ophthalmological implantation. Therefore, we conclude the surface ftinctionalized IOL has the potential to control PCO.
机译:通过增强对表面功能化IOL材料的附着,LEC可以形成一个薄层,以重建其在自然晶状体中的生理状况。这与PCO开发控制的建议相对应。另外,细胞与疏水物质对照具有相似的空间分布和细胞形态,这意味着被转化的机会更少。另一方面,表面功能化保留了眼科植入物的原始材料特性。因此,我们得出结论,表面功能化的IOL具有控制PCO的潜力。

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  • 会议地点 Liverpool(GB)
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    Mass Spectrometry Laboratory Department of Chemistry and Mammalian Cell Culture Laboratory Department of Biomedical and Preclinical Sciences - GIGA R University of Liege Liege Belgium CBMN UMR5248 Institut Europeen de Chimie et Biologie University of Bordeaux Ⅰ Pessac France;

    Mass Spectrometry Laboratory Department of Chemistry and Mammalian Cell Culture Laboratory Department of Biomedical and Preclinical Sciences - GIGA R University of Liege Liege Belgium;

    PhysIOL Liege Belgium;

    CBMN UMR5248 Institut Europeen de Chimie et Biologie University of Bordeaux Ⅰ Pessac France;

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