...
首页> 外文期刊>Scientific reports. >The Potential Risk Assessment of Phenoxyethanol with a Versatile Model System
【24h】

The Potential Risk Assessment of Phenoxyethanol with a Versatile Model System

机译:具有多功能模型系统的苯氧乙烷醇的潜在风险评估

获取原文
           

摘要

In this study, the toxic effects of phenoxyethanol (Phy-Et), which is widely used in cosmetic industry, has been investigated with Allium test by means of physiological, cytogenetic, anatomical and biochemical parameters. To determine the changes in physiological reactions weight gain, relative injury rate, germination percentage and root length were investigated. Malondialdehyde, superoxide dismutase, glutathion and catalase levels were analyzed as biochemical parameters for determining the presence of oxidative stress. Mitotic index, micronucleus and chromosomal abnormality frequencies were studied as cytogenetic evaluation and the anatomical changes in root tip cells were investigated by cross sections. Changes in surface polarity and wettability were investigated by taking contact angle measurements of pressed root preparations. The mechanism of toxicity has been tried to be explained by these contact angles and this is the first study using contact angle measurements in toxicity tests. Consequently, exposure to Phy-Et resulted in a decrease in all measured physiological parameters and in mitotic index. In contrast, significant increases in the micronucleus and chromosomal abnormality frequencies were observed and the most significant toxic effect was found in 10?mM Phy-Et treated group. Phy-Et application induced oxidative damage and caused a significant increase in malondialdehyde level and a decrease in glutathione level compared to control group. Also a response occured against oxidative damage in superoxide dismutase and catalase activity and the activities increased in 2.5?mM and 5?mM Phy-Et treated groups and decreased in 10?mM Phy-Et treated groups. Furthermore, Phy-Et treatment resulted in some anatomical damages and changes such as necrosis, cell deformation and thickening of the cortex cell wall in root tip meristem cells of A. cepa. In the contact angle measurements taken against water, it was found that the wettability and hydrophilicity of the root preparations treated with Phy-Et were reduced, and this was the explanation of the growth abnormalities associated with water uptake. As a result, it was found that Phy-Et application caused toxic effects on many viability parameters and A. cepa test material was a reliable biomarker in determining these effects.
机译:在该研究中,通过生理学,细胞遗传学,解剖学和生物化学参数,研究了苯氧乙烷醇(PHY-ET)的毒性作用。为了确定生理反应的变化,研究了重量增益,相对损伤率,发芽率和根长度。丙二醛,超氧化物歧化酶,谷胱甘肽和过氧化氢酶水平被分析为生化参数,用于确定氧化应激的存在。有丝分裂指数,微核和染色体异常频率被研究为细胞遗传学评估,并通过横截面研究了根尖细胞的解剖学变化。通过采用压力根制剂的接触角测量来研究表面极性和润湿性的变化。已经尝试通过这些接触角来解释毒性机制,这是使用毒性测试中的接触角测量的第一研究。因此,暴露于PHY-ET导致所有测量的生理参数和有丝分裂指数的降低。相比之下,观察到微核和染色体异常频率的显着增加,并且在10μmMMPH-ET处理的组中发现了最显着的毒性效果。 PHY-ET应用诱导氧化损伤并导致与对照组相比丙二醛水平的显着增加和谷胱甘肽水平的降低。同时对超氧化物歧化酶和过氧化氢酶活性的氧化损伤发生的反应,并且活性在2.5?mm和5?mm phy-et处理的基团中增加并在10μmPhy-et处理的基团中降低。此外,PHY-ET治疗导致一些解剖损伤和变化,例如Dortex Cell壁的坏死,细胞变形和增稠A.CEPA的细胞。在抵抗水的接触角测量中,发现用PHY-ET处理的根制剂的润湿性和亲水性降低,这是对与水吸收相关的生长异常的解释。结果,发现PHY-ET申请对许多活力参数产生毒性作用,A.CEPA测试材料是确定这些效果的可靠生物标志物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号