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Evidence for Bisphenol B Endocrine Properties: Scientific and Regulatory Perspectives

机译:双酚B内分泌属性的证据:科学和监管观点

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Background: The substitution of bisphenol A (BPA) by bisphenol B (BPB), a very close structural analog, stresses the need to assess its potential endocrine properties. Objective: This analysis aimed to investigate whether BPB has endocrine disruptive properties in humans and in wildlife as defined by the World Health Organization (WHO) definition used in the regulatory field, that is, a ) adverse effects, b ) endocrine activity, and c ) plausible mechanistic links between the observed endocrine activity and adverse effects. Methods: We conducted a systematic review to identify BPB adverse effects and endocrine activities by focusing on animal models and in vitro mechanistic studies. The results were grouped by modality (estrogenic, androgenic, thyroid hormone, steroidogenesis-related, or other endocrine activities). After critical analysis of results, lines of evidence were built using a weight-of-evidence approach to establish a biologically plausible link. In addition, the ratio of BPA to BPB potency was reported from studies investigating both bisphenols. Results: Among the 36 articles included in the analysis, 3 subchronic studies consistently reported effects of BPB on reproductive function. In rats, the 28-d and 48-week studies showed alteration of spermatogenesis associated with a lower height of the seminiferous tubules, the alteration of several sperm parameters, and a weight loss for the testis, epididymis, and seminal vesicles. In zebrafish, the results of a 21-d reproductive study demonstrated that exposed fish had a lower egg production and a lower hatching rate and viability. The in vitro and in?vivo mechanistic data consistently demonstrated BPB’s capacity to decrease testosterone production and to exert an estrogenic-like activity similar to or greater than BPA’s, both pathways being potentially responsible for spermatogenesis impairment in rats and fish. Conclusion: The available in?vivo , ex vivo , and in vitro data, although limited, coherently indicates that BPB meets the WHO definition of an endocrine disrupting chemical currently used in a regulatory context.
机译:背景技术:通过双酚B(BPB)取代双酚A(BPA),非常紧密的结构模拟,应力评估其潜在的内分泌性质。目的:该分析旨在调查BPB是否在监管领域中使用的世界卫生组织(世卫组织)定义的人类和野生动物中具有内分泌破坏性的性质,即,该监管领域,即a)的不良反应,b)内分泌活动和c )观察到的内分泌活动和不良反应之间的合理机械联系。方法:通过专注于动物模型和体外机械研究,对鉴定BPB不利影响和内分泌活动进行了系统审查。结果由模态(雌激素,雄激素,甲状腺激素,类固醇相关或其他内分泌活性分组)分组。在对结果的批判性分析后,使用权重方法建立了证据,建立了建立生物合理的联系。此外,从研究双酚的研究报告了BPA与BPB效力的比例。结果:分析中包含的36篇文章中,3个次级调整研究始终如一地报告了BPB对生殖功能的影响。在大鼠中,28-D和48周的研究表明,与肌肉小管的较低高度相关的精子发生,几种精子参数的改变以及睾丸,附睾和精髓囊泡的减重。在斑马鱼中,21-D生殖研究的结果表明,暴露的鱼具有较低的鸡蛋生产和较低的孵化率和可行性。体外和体内机械数据始终如一地证明了BPB减少睾酮产生的能力,并施加类似于或大于BPA的雌激素的活性,这两个途径可能导致大鼠和鱼类的精子发生损伤。结论:虽然有限,但虽然有限,但虽然有限,但虽然有限,但虽然是有限的,但是BPB符合目前用于监管范围中使用的内分泌的内分泌的定义。

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