Department of Toxicology "Akademik Danilo Soldatović", University of Belgrade-Faculty of Pharmacy, 11000 Belgrade, Serbia.
Laboratory of Toxicology, University of Crete, Medical School, 71003 Crete, Greece.
Int J Mol Sci. 2018 May 17;19(5):1501. doi: 10.3390/ijms19051501.
Humans are exposed to a significant number of chemicals that are suspected to produce disturbances in hormone homeostasis. Hence, in recent decades, there has been a growing interest in endocrine disruptive chemicals. One of the alleged thyroid disrupting substances is cadmium (Cd), a ubiquitous toxic metal shown to act as a thyroid disruptor and carcinogen in both animals and humans. Multiple PubMed searches with core keywords were performed to identify and evaluate appropriate studies which revealed literature suggesting evidence for the link between exposure to Cd and histological and metabolic changes in the thyroid gland. Furthermore, Cd influence on thyroid homeostasis at the peripheral level has also been hypothesized. Both in vivo and in vitro studies revealed that a Cd exposure at environmentally relevant concentrations results in biphasic Cd dose-thyroid response relationships. Development of thyroid tumors following exposure to Cd has been studied mainly using in vitro methodologies. In the thyroid, Cd has been shown to activate or stimulate the activity of various factors, leading to increased cell proliferation and a reduction in normal apoptotic activity. Evidence establishing the association between Cd and thyroid disruption remains ambiguous, with further studies needed to elucidate the issue and improve our understanding of Cd-mediated effects on the thyroid gland.
人类暴露于大量疑似会破坏激素平衡的化学物质中。因此,在最近几十年中,人们对内分泌干扰化学物质越来越感兴趣。镉(Cd)是一种普遍存在的有毒金属,被认为是一种在动物和人类中具有甲状腺干扰和致癌作用的疑似甲状腺干扰物质。通过使用核心关键词进行了多次 PubMed 搜索,以确定和评估适当的研究,这些研究揭示了文献中表明暴露于 Cd 与甲状腺组织和代谢变化之间存在联系的证据。此外,还假设 Cd 会对甲状腺外周水平的内环境稳定产生影响。体内和体外研究均表明,在环境相关浓度下暴露于 Cd 会导致甲状腺反应的双峰 Cd 剂量-反应关系。Cd 暴露后甲状腺肿瘤的发展主要使用体外方法学进行研究。在甲状腺中,Cd 已被证明可以激活或刺激各种因子的活性,导致细胞增殖增加和正常凋亡活性降低。建立 Cd 与甲状腺干扰之间关联的证据仍然存在争议,需要进一步的研究来阐明这个问题,并加深我们对 Cd 对甲状腺影响的理解。