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后房型人工晶状体矩形光学边缘在晶状体囊袋弯曲处对迁移的晶状体上皮细胞的抑制作用。

Inhibition of migrating lens epithelial cells at the capsular bend created by the rectangular optic edge of a posterior chamber intraocular lens.

作者信息

Nishi O, Nishi K, Sakanishi K

机构信息

Nishi Eye Hospital, Osaka, Japan.

出版信息

Ophthalmic Surg Lasers. 1998 Jul;29(7):587-94.

PMID:9674010
Abstract

BACKGROUND AND OBJECTIVE

To study the mechanism of the reportedly low incidence of posterior capsule opacification (PCO) in eyes treated with a posterior chamber intraocular lens (PC IOL).

MATERIALS AND METHODS

Various IOL designs, including the PC IOL, were studied using scanning electron microscopy. Rabbit lens capsules were studied histopathologically 2, 3, and 4 weeks after implantation of a PC IOL in one eye and a biconvex polymethylmethacrylate (PMMA) IOL in the contralateral eye as a control.

RESULTS

The optic edge of the PC IOL was sharp and rectangular, whereas that of the biconvex PMMA or silicone IOLs from various manufacturers had been smoothed and rounded by polishing. PCO was significantly reduced in the eye with a PC IOL in all rabbits. The lens capsule wrapped tightly around the optic edge of the PC IOL so that it conformed to the same shape and thereby created a distinct rectangular bend in the capsule or a rectangle between the optic edge and the posterior capsule. Migrating lens epithelial cells (LECs) were obviously inhibited at that site.

CONCLUSIONS

A discontinuous capsular bend or rectangle created by the sharp, square optic edge of the PC IOL may have induced contact inhibition to migrating LECs and reduced PCO. How, whether, and to what extent this design-dependent effect is influenced by features of the IOL material needs to be clarified by comparison with results achieved with an IOL made from the same material in a different design and vice versa.

摘要

背景与目的

研究后房型人工晶状体(PC IOL)植入眼后囊膜混浊(PCO)发生率据报道较低的机制。

材料与方法

使用扫描电子显微镜研究包括PC IOL在内的各种人工晶状体设计。在兔子的一只眼中植入PC IOL,对侧眼植入双凸聚甲基丙烯酸甲酯(PMMA)IOL作为对照,在植入后2周、3周和4周对兔子晶状体囊膜进行组织病理学研究。

结果

PC IOL的光学边缘尖锐且呈矩形,而来自不同制造商的双凸PMMA或硅酮IOL的光学边缘经抛光后已变平滑且呈圆形。所有兔子中植入PC IOL的眼睛PCO明显降低。晶状体囊膜紧紧包裹在PC IOL的光学边缘周围,使其符合相同形状,从而在囊膜中形成明显的矩形弯曲或在光学边缘与后囊膜之间形成矩形。迁移的晶状体上皮细胞(LEC)在该部位明显受到抑制。

结论

PC IOL尖锐、方形的光学边缘所形成的不连续囊膜弯曲或矩形可能对迁移的LEC产生接触抑制并降低PCO。这种依赖设计的效应如何、是否以及在何种程度上受人工晶状体材料特性的影响,需要通过与不同设计但相同材料的人工晶状体的结果进行比较来阐明,反之亦然。

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