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细胞活力评分 (CVS) 可作为苯扎氯铵毒性临界浓度的良好指标,用于培养的眼表细胞系。

Cell viability score (CVS) as a good indicator of critical concentration of benzalkonium chloride for toxicity in cultured ocular surface cell lines.

机构信息

Department of Bioengineering, Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, Japan.

出版信息

Regul Toxicol Pharmacol. 2013 Jul;66(2):177-83. doi: 10.1016/j.yrtph.2013.03.014. Epub 2013 Apr 1.

Abstract

Cytotoxicity of benzalkonium chloride (BAK) is a major factor affecting drug cytotoxicity. This study aimed to determine the critical concentration of BAK for cultured ocular cells, using SIRC (rabbit corneal epithelium), BCE C/D-1b (bovine corneal epithelial cells), RC-1 (rabbit corneal epithelium), and Chang (human conjunctival cells). Cell viability was determined following the exposure of cells to 11 concentrations of BAK for 10, 30, or 60 min using the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) and neutral red assays, and the cell viability score (CVS) was used to evaluate comprehensively the toxicity of BAK. The CVS system consists of two values. The CVS50 was determined by the number of measurements for viability ≥50% of control. The CVS40/80 was calculated as follows: CVS40/80=(number of measurements for viability values >80%)-(number of measurements for viability values <40%). Both %CVS50 and %CVS40/80 decreased with concentrations of BAK. When BAK concentrations were 0.01% or higher, %CVS50 and %CVS40/80 became 0 and less than -90, respectively. Meanwhile, when BAK concentrations were 0.001% or lower, %CVS50 became 100. In the case of %CVS40/80, when the BAK concentrations were 0.002% or lower, the values reached 75 or more, and when 0.0005% or lower, the %CVS40/80 value reached 100. Accordingly, BAK induced very low cytotoxicity in the cultured ocular cell lines at concentrations of 0.002% or lower. The concentration-dependency confirmed that the CVS score is useful for expressing drug cytotoxicity in a simple and comprehensive manner.

摘要

苯扎氯铵(BAK)的细胞毒性是影响药物细胞毒性的一个主要因素。本研究旨在确定培养的眼部细胞中 BAK 的临界浓度,使用 SIRC(兔角膜上皮)、BCE C/D-1b(牛角膜上皮细胞)、RC-1(兔角膜上皮)和 Chang(人结膜细胞)。将细胞暴露于 11 种不同浓度的 BAK 中 10、30 或 60 分钟后,通过 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴盐(MTT)和中性红测定法测定细胞活力,并使用细胞活力评分(CVS)综合评估 BAK 的毒性。CVS 系统由两个值组成。CVS50 通过对活力≥对照 50%的测量次数来确定。CVS40/80 的计算公式如下:CVS40/80=(活力值>80%的测量次数)-(活力值<40%的测量次数)。BAK 浓度降低时,%CVS50 和 %CVS40/80 均降低。当 BAK 浓度为 0.01%或更高时,%CVS50 和 %CVS40/80 分别变为 0 和小于-90。同时,当 BAK 浓度为 0.001%或更低时,%CVS50 变为 100。对于 %CVS40/80,当 BAK 浓度为 0.002%或更低时,值达到 75 或更高,当浓度为 0.0005%或更低时,%CVS40/80 值达到 100。因此,在 0.002%或更低的浓度下,BAK 对培养的眼部细胞系的细胞毒性非常低。浓度依赖性证实,CVS 评分可用于简单而全面地表达药物细胞毒性。

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