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各种人工晶状体材料对炎性细胞的化学吸引作用。

Chemoattraction of inflammatory cells by various intraocular lens materials.

作者信息

Ozdal Pinar C, Antecka Emilia, Baines Malcolm G, Vianna Raul N G, Rudzinski Marcello, Deschênes Jean

机构信息

Department of Ophthalmology, McGill University, Montréal, Québec, Canada.

出版信息

Ocul Immunol Inflamm. 2005 Dec;13(6):435-8. doi: 10.1080/09273940591004124.

Abstract

PURPOSE

To compare the chemotactic activity induced by polymethyl methacrylate (PMMA), acrylic, and silicone intraocular lens (IOL) materials, regardless of the surgical and host factors.

METHODS

The chemotactic effect of five different IOLs was studied using a modified multi-well Boyden chamber. Two different non-coated PMMA IOLs, a heparin-coated PMMA IOL, an acrylic IOL, and a silicone IOL were assessed. Each mean migration distance of the IOLs was compared with the others using Student's t test.

RESULTS

All IOLs induced some amount of leukocyte chemotaxis. There was no statistically significant difference between the chemotactic activity of PMMA IOLs. However, chemotactic activity was significantly higher in acrylic (p<0.05) and silicone (p<0.05) IOLs compared to one of the PMMA lenses.

CONCLUSIONS

This limited study has proven that chemotaxis assay is a useful tool to assess the biocompatibility of IOLs. The IOL material itself might attract inflammatory cells to its surface in the absence of surgical and host factors. As PMMA IOLs do not cause an increase in inflammatory reaction, they may be considered safe to use. Further improvement in chemical composition and surface characteristics of IOLs should reduce the inflammatory reaction and increase the biocompatibility and safety of IOLs.

摘要

目的

比较聚甲基丙烯酸甲酯(PMMA)、丙烯酸酯和硅胶人工晶状体(IOL)材料诱导的趋化活性,而不考虑手术和宿主因素。

方法

使用改良的多孔博伊登小室研究五种不同人工晶状体的趋化作用。评估了两种不同的未涂层PMMA人工晶状体、一种肝素涂层PMMA人工晶状体、一种丙烯酸酯人工晶状体和一种硅胶人工晶状体。使用学生t检验比较各人工晶状体的平均迁移距离。

结果

所有人工晶状体均诱导了一定程度的白细胞趋化作用。PMMA人工晶状体的趋化活性之间无统计学显著差异。然而,与其中一种PMMA晶状体相比,丙烯酸酯(p<0.05)和硅胶(p<0.05)人工晶状体的趋化活性显著更高。

结论

这项有限的研究证明趋化分析是评估人工晶状体生物相容性的有用工具。在没有手术和宿主因素的情况下,人工晶状体材料本身可能会吸引炎症细胞至其表面。由于PMMA人工晶状体不会导致炎症反应增加,因此可认为使用安全。人工晶状体化学组成和表面特性的进一步改善应能减少炎症反应,提高人工晶状体的生物相容性和安全性。

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