风险评估和潜在生物机制信息的使用:观点

Lorenz Rhomberg
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引用次数: 2

摘要

近年来,对化学物质毒性反应的潜在生物学基础的科学认识迅速扩大。这些信息在健康风险评估中的使用正在扩大,但尚未充分发挥其潜力。本文考虑了已经成功完成的工作,正在开发的方法,以及在尝试将特定病例的机械毒理学信息用于风险评估时遇到的障碍和困难。在危害识别中,机制信息可以帮助解释各种经验实验结果对推断人类危害的影响,可以提高检测的灵敏度,并且可以考虑用基于确定致癌性基础的关键生物学特性而不仅仅依赖于肿瘤的实验观察的危害识别方法来取代2年的动物生物测定。在致癌物效价估计中,机制信息可以潜在地将相关观察扩展到更低的剂量水平,为选择基于经验的剂量-反应模型提供基础,通过与短期试验结果的定量测量的关系进行效价估计,并且可以被认为是在基于生物学的剂量-反应建模中提供直接观察生物学参数的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Risk assessment and the use of information on underlying biologic mechanisms: A perspective

Recent years have seen the rapid expansion of scientific understanding of the underlying biologic bases of toxic reactions to chemicals. Use of this information in health risk assessment is expanding, but it has yet to reach its full potential. This article considers what has successfully been done, what approaches are now being developed, and what impediments and difficulties have been encountered in attempts to bring case-specific, mechanistic toxicological information to bear on risk estimation. In hazard identification, mechanistic information can help explain the bearing of various empirical experimental results for inferring human hazard, can increase the sensitivity of detection, and can be considered in attempts to replace 2-year animal bioassays with hazard identification methods that rest on identifying key biological properties underlying carcinogenicity rather than relying only on the experimental observation of tumors. In carcinogen potency estimation, mechanistic information can potentially extend relevant observation to lower dose levels, provide the basis for choosing among empirically based dose-response models, lead to potency estimates through relationships with quantitative measures of short-term test outcomes, and can be considered as a basis for providing direct observation of the biological parameters in biologically based dose-response modeling.

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