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A Fully Human In Vitro Capsular Bag Model to Permit Intraocular Lens Evaluation

机译:允许人工晶状体评估的完全人体外囊袋模型

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Purpose.: To establish a fully human in vitro culture model with which to test the putative effects of intraocular lens (IOL) designs in preventing posterior capsule opacification (PCO) after cataract surgery. Methods.: A sham cataract operation was performed to prepare human capsular bags from donor lenses. In one capsular bag of a donor pair, an intraocular lens (PMMA round-edge IOL or acrylic IOL) was implanted while the other capsular bag remained aphakic. Bags were transferred to a Petri dish and secured anterior-face down using entomological pins. Capsular bags were maintained in Eagle's minimum essential medium supplemented with 2% human serum and 10 ng/mL TGF-?2 to drive growth and matrix contraction. Results.: In the absence of an IOL, cells appeared within the central posterior capsule at 4.38 ?± 0.26 days, whereas in the presence of a PMMA round-edge IOL or an acrylic IOL they appeared at 8 ?± 0.41 days and 11 ?± 0.7 days, respectively. Immunocytochemical analysis showed an accumulation of cells at the edge of the acrylic IOL and a less evident accumulation with the PMMA round-edge IOL. Moreover, matrix contraction was more prominent in the absence of an IOL but was still apparent, to a lesser degree, in the presence of a PMMA round-edge IOL. The acrylic IOL greatly suppressed matrix contraction. Conclusions.: The authors have developed a fully human in vitro capsular bag system that relates well to clinical observations and permits the testing of novel intraocular lenses.
机译:目的:建立一个完整的体外培养模型,以测试人工晶状体(IOL)设计在预防白内障手术后后囊混浊(PCO)中的假定作用。方法:进行假性白内障手术,从供体晶状体制备人囊袋。在供体对的一个囊袋中,植入一个人工晶状体(PMMA圆边IOL或丙烯酸IOL),而另一个囊袋保持无晶状体。将袋子转移到陪替氏培养皿中,并使用昆虫学针将其正面朝下固定。囊袋保存在Eagle的基本必需培养基中,该培养基中补充了2%的人血清和10 ng / mL的TGF-β2,以促进生长和基质收缩。结果:在没有IOL的情况下,中央后囊中的细胞在4.38±0.26天时出现,而在存在PMMA圆边IOL或丙烯酸IOL的情况下,它们在8±0.41天和11时出现。分别为±0.7天。免疫细胞化学分析显示丙烯酸IOL边缘有细胞积聚,而PMMA圆边IOL则较不明显。此外,在没有IOL的情况下,基质收缩更为明显,但在存在PMMA圆边IOL的情况下,基质收缩程度较小。丙烯酸IOL大大抑制了基质收缩。结论:作者已经开发出了一种完整的人体外囊袋系统,该系统与临床观察密切相关,并可以测试新型人工晶状体。

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