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[采用3T3小鼠成纤维细胞中性红摄取光毒性试验对化妆品进行的建立与评估]

[The establishment and assessment on cosmetic products using 3T3 mouse fibroblast neutral red uptake phototoxicity assay].

作者信息

Yang Ying, Xiong Xi-Kun, Yang Xing-Fen, He Xi-Wen, Huang Jun-Ming, Tan Xiao-Hua, Zheng Sui-Sheng

机构信息

Center for Disease Control and Prevention of Guangdong Province, Guangzhou 510030, China.

出版信息

Zhonghua Yu Fang Yi Xue Za Zhi. 2007 Nov;41(6):479-82.

Abstract

OBJECTIVE

To establish the 3T3 mouse fibroblast neutral red uptake (NRU-PT) phototoxicity test method, and evaluate the practicality of the method in detecting potential phototoxicity of the cosmetic products.

METHODS

Fifteen phototoxic and 9 non-phototoxic chemicals were tested in our laboratories, the phototoxic potential of the test chemicals was evaluated in a prediction model in which either the photo irritation factor (PIF) or the mean photo effect (MPE) was compared with the coherence and sensitivity of the method. 20 kinds of functional cosmetics were detected and the results were analyzed by the 3T3 NRU-PT in vitro and Guinea pig skin phototoxicity test (in vivo).

RESULTS

Both PIF and MPE of the chemicals were highly reproduced, and the correlation between in vitro and in vivo data was almost perfect. All the non-phototoxic provided a negative result, while 14 of the 15 phototoxic tested chemicals gave clear positive results. For cosmetics, the correlation between in vitro and in vivo data was consistent.

CONCLUSION

The 3T3 NRU PT test was established successfully, it should be used as a good alternative method for assessing the phototoxic potential of the chemicals and cosmetics in China.

摘要

目的

建立3T3小鼠成纤维细胞中性红摄取光毒性试验(NRU-PT)方法,并评价该方法在检测化妆品潜在光毒性方面的实用性。

方法

在本实验室对15种光毒性化学物质和9种非光毒性化学物质进行测试,在预测模型中通过比较光刺激因子(PIF)或平均光效应(MPE)来评估受试化学物质的光毒性潜力,同时比较该方法的一致性和敏感性。对20种功能性化妆品进行检测,并通过3T3 NRU-PT体外试验和豚鼠皮肤光毒性试验(体内试验)对结果进行分析。

结果

化学物质的PIF和MPE均具有高度重复性,体外和体内数据之间的相关性几乎完美。所有非光毒性物质均给出阴性结果,而15种受试光毒性化学物质中有14种给出明确阳性结果。对于化妆品,体外和体内数据之间的相关性是一致的。

结论

成功建立了3T3 NRU PT试验,该试验应作为中国评估化学物质和化妆品光毒性潜力的一种良好替代方法。

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