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Future of Toxicology-Low-Dose Toxicology and Risk-Benefit Analysis

机译:毒理学的未来-低剂量毒理学和风险收益分析

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Toxicology historically has been directed at studying the mechanisms of adverse effects of isolated compounds on living organisms at high levels of exposure,forming the basis for risk and safety assessment.One way to refocus and mobilize new research funds would be to better match the priorities in regulatory issues and direct the research within the field of toxicology more to low-dose toxicology and risk-benefit analysis.Low-dose toxicology can only be developed when taking into account mechanistic insight and will require risk-benefit analysis and a definition of interactions between compounds at realistic doses of exposure,especially in the case of dietary constituents.This is because the biological effects at low levels of exposure not only may be adverse but also can be beneficial depending on the target organ,the actual end point studied,the receptors activated,and/or the gene expression,protein,and metabolite patterns affected.Toxicologists have the tools and knowledge to study mechanisms of biological effects of chemicals on living organisms,and they should redirect their focus from looking only at adverse effects at high levels of exposure to characterizing the complex biological effects,both adverse and beneficial,at low levels of exposure.This may even result in the notion that beneficial effects can be the result of reaction pathways that are generally considered adverse and vice versa.Low-dose toxicology not only will provide a significant research challenge for the years ahead but also should contribute to better methods for low-dose risk assessment for complex mixtures of chemical compounds.This refocusing from high- to low-dose effects turns the field from a science focusing on adverse effects into a science studying the biological effects of chemical compounds on living organisms,taking into account the realization that the ultimate biological effect of a chemical may vary with its dose,the end point or target organ considered,and/or the combined exposure with other chemicals.By defining the effects of chemicals on living organisms at physiologically relevant exposure levels,toxicologists may contribute not only to better risk and safety assessment but also to preventive medicine,generating knowledge on possible adverse and also beneficial effects of chemicals.In addition,it will result in an approach for food safety assessment more in line with that for drug safety assessment taking the risk-benefit balance into consideration.
机译:毒理学历来致力于研究高暴露水平下分离的化合物对活生物体的不良影响机制,为风险和安全性评估奠定了基础。重新聚焦和动员新研究资金的一种方法是更好地匹配研究重点。监管问题,并将毒理学领域的研究更多地转向低剂量毒理学和风险收益分析,只有在考虑到机械机理的情况下才能开发低剂量毒理学,这需要风险收益分析和相互之间的相互作用的定义化合物的实际暴露剂量,尤其是饮食成分。这是因为根据目标器官,研究的实际终点和受体,低暴露水平下的生物效应不仅可能是不利的,而且还可能是有益的激活,和/或基因表达,蛋白质和代谢产物类型受到影响。毒理学家拥有研究的工具和知识化学物质对生物的生物学作用机理,他们应该将注意力从仅在高暴露水平下的不良影响转移到表征在低暴露水平下既不利又有益的复杂生物学效应的特征上。这甚至可能导致低剂量毒理学不仅会为未来几年的研究带来重大挑战,而且还应为更好的低剂量风险评估方法做出贡献,认为有益作用可能是通常被认为是不利的反应途径的结果,反之亦然。从高剂量效应转向低剂量效应,这使该领域从关注副作用的科学转变为研究化合物对生物体生物学影响的科学,同时考虑到最终生物化学品的作用可能随其剂量,所考虑的终点或目标器官和/或联合使用的药物而异与其他化学药品一起使用。毒物学家通过定义化学药品在生理上相关的暴露水平下对活生物体的影响,不仅可以促进更好的风险和安全性评估,而且可以为预防医学做出贡献,从而获得有关化学药品可能产生的不利影响和有益影响的知识。此外,考虑到风险与收益之间的平衡,这将导致食品安全评估的方法与药物安全评估的方法更加一致。

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