Cytotoxicity evaluation of multipurpose contact lens solutions using an in vitro test battery.

X T Pham, J W Huff
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Abstract

Purpose: Many in vitro alternatives to eye irritation testing are not mechanism-specific and do not employ ocular cell lines. We have developed an effective and reliable test battery that reveals toxicity mechanisms of contact lens solutions on cell metabolism and proliferation.

Methods: Cytotoxicity endpoints were quantified using bovine corneal epithelial cultures in 96-well microplates. A kenacid blue assay provided information on total cell protein, while lactate production and alamarBlue assays served as indicators of aerobic/anaerobic metabolism and redox state of cells grown in serum-free Dulbecco's modified Eagle's/Ham's F12 medium (DMEM/F12). Concentrations (% v/v) causing 10-90% inhibition of the control assay responses were used for correlations with in vivo data.

Results: Cytotoxicities of contact lens solutions correlated better with irritant symptoms than with corneal staining, and were ranked as follows: Lens Plus << Opti-Free < or = ContaClair < or = ReNu. Lens Plus was not toxic to cell glycolysis, respiration, and proliferation for up to 20% v/v. However, the multi-purpose solutions inhibited these endpoints in a concentration-dependent manner. Opti-Free and ReNu, containing Dymed and Polyquad (ammonium surfactants), showed non-specific cell inhibition. The lactate production assay had a flatter log concentration-response curve than the other two assays.

Conclusions: The proposed biochemically-based test battery using the target corneal epithelium has the potential to be a simple and effective method for screening and defining toxicity profiles of contact lens care solutions. The model can be applicable to small- or large-scale testing programs and research and development of new ocular products.

用体外试验电池评价多用途隐形眼镜溶液的细胞毒性。
目的:许多眼睛刺激试验的体外替代方法不是机制特异性的,也不使用眼细胞系。我们开发了一种有效可靠的测试电池,揭示了隐形眼镜溶液对细胞代谢和增殖的毒性机制。方法:采用96孔微孔板培养牛角膜上皮细胞,定量测定细胞毒性终点。ken酸蓝测定提供了细胞总蛋白的信息,而乳酸产量和alamarBlue测定是在无血清Dulbecco改良Eagle /Ham's F12培养基(DMEM/F12)中生长的细胞的好氧/厌氧代谢和氧化还原状态的指标。浓度(% v/v)对对照试验反应的抑制作用为10-90%,用于与体内数据的相关性。结果:隐形眼镜护理液的细胞毒性与刺激症状的相关性优于与角膜染色的相关性,其排名如下:lens Plus结论:提出的使用目标角膜上皮的基于生化的测试电池有可能成为筛选和确定隐形眼镜护理液毒性特征的简单有效方法。该模型可适用于小型或大型测试项目和新型眼科产品的研发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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