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Bisphenol A exposure, effects, and policy: A wildlife perspective

机译:双酚A的暴露,影响和政策:野生动物的观点

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摘要

Thousands of anthropogenic chemicals are present in the environment, and mounting evidence indicates that some have endocrine-disrupting effects in a variety of organisms. Of particular concern are chemicals that act as agonists or antagonists on vertebrate estrogen or androgen receptors. One such compound is bisphenol A (BPA), which appears to be both an estrogen receptor agonist and an androgen receptor antagonist. Used in the manufacture of plastic resins, BPA is found at low levels in surface-water, sediments, soils, and biota. Although it degrades quickly, it is pseudo-persistent in the environment because of continual inputs. Due to its environmental ubiquity, organisms may be exposed to BPA chronically or during sensitive life stages. While the impacts of BPA-related endocrine disruption in humans have been extensively studied, the endocrinal and systemic effects in wildlife are less well known. This article reviews the current state of knowledge of BPA inputs to the environment, routes of exposure, and effects on wildlife. We then critically examine the regulatory structure governing the environmental endpoints of BPA in the United States, European Union, and Canada, and discuss major challenges to the effective regulation of BPA. We conclude with a survey of treatment and mitigation options.
机译:环境中存在成千上万种人为化学物质,越来越多的证据表明某些化学物质对多种生物具有内分泌干扰作用。特别令人关注的是充当脊椎动物雌激素或雄激素受体激动剂或拮抗剂的化学物质。一种这样的化合物是双酚A(BPA),它似乎既是雌激素受体激动剂又是雄激素受体拮抗剂。用于制造塑料树脂的BPA在地表水,沉积物,土壤和生物区系中含量低。尽管它退化很快,但是由于持续的输入,它在环境中是伪持久的。由于其环境无处不在,生物可能会长期或在敏感的生命阶段接触BPA。尽管已经广泛研究了BPA相关内分泌干扰物对人类的影响,但对于野生生物的内分泌和全身作用却鲜为人知。本文回顾了BPA对环境的投入,接触途径和对野生生物的影响的当前知识水平。然后,我们将严格审查在美国,欧盟和加拿大管理BPA环境端点的监管结构,并讨论对BPA有效监管的主要挑战。我们以对治疗和缓解方案的调查作为结束。

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