血结合的跨物种比较以及对数据评估的考虑
Scott G Lynn1, Irvin R Schultz2, Sharlene R Matten3
1US Environmental Protection Agency, Office of Pesticide Programs, William Jefferson Clinton Building, 1200 Pennsylvania Avenue NW, Washington, DC 20460, USA.
这项研究使用了新方法方法 (NAMs) 来测量人类,老鼠和鱼等离子体中的化学结合. 结果显示了物种之间结合的差异,并突出了高度结合的化学物质带来的挑战.
科学领域:
- 环境科学 环境科学
- 毒理学 毒理学 毒理学
- 生物化学 生化学
背景情况:
- 美国环境保护局 (EPA) 正在采用新方法 (NAM) 来进行化学安全评估.
- 诸如血结合试验之类的体外方法对于生成化学特异性数据至关重要.
研究的目的:
- 介绍人体,老鼠和彩虹鱼体外血结合实验的数据.
- 评估物理化学性质对化学试验性能的影响,并促进跨物种比较.
主要方法:
- 使用快速平衡透析 (RED) 用来自三种物种的血和54种化学物质的两种度.
- 使用质量平衡控制来评估化学稳定性和回收的数据质量.
- 分析了血中未结合的分数 (fup) 和log Kow之间的相关性.
主要成果:
- 产生了238个化学物种特定数据集,其中92个 (约. 40%) 产生了定量测量.
- 与人血相比,大鼠血中观察到较高的未结合分数 (fup).
- 在鱼血中发现的fup值低于老鼠或人类血.
- 确定了fup和logKow之间的最强相关性,值在1.5到4之间.
结论:
- 逻辑Kow>> 4.5的化学物质具有高度结合性,难以测量,并且显示出低可重现性.
- 由于可变的测试性能,对数据质量进行可靠的评估至关重要.
- 方法可能需要根据化学物理化学特性进行调整,特别是对于高度结合的物质.
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