Park Changgyun, Lim Heung Bin
Division of Experimental Neurosurgery, Department of Neurosurgery, Heidelberg University Hospital, 69120 Heidelberg, Germany.
Department of Industrial Plant Science & Technology, Chungbuk National University, Cheongju 28644, Republic of Korea.
Toxins (Basel). 2025 Aug 20;17(8):423. doi: 10.3390/toxins17080423.
Secondary metabolites derived from plants, such as flavonoids, alkaloids, and terpenoids, are being increasingly utilized because of their bioactivity and ubiquitous distribution. Although their pharmacological uses and agricultural applications are well studied, their potential role as endocrine-disrupting compounds (EDCs) in non-target environmental organisms is largely unknown. This review aims to update our knowledge on the endocrine-disrupting effects induced by plant-derived metabolites in environmental testing models. We review guidelines and conceptual models for standardized testing approaches used to assess endocrine disruption and identify critical data gaps in the context of mammalian test systems compared to those for environmental species. We also emphasize the known endocrine mechanisms, including the regulation of estrogen and thyroid pathways and their effects on reproduction and hormonal regulation in environmental species. By integrating evidence across diverse biological systems, this work intends to provide a link between toxicological and ecological perspectives on the emerging role of plant-derived metabolites as potential EDCs in natural ecosystems. Importantly, we highlight that an extensive assessment of plant-derived metabolites is required to improve understanding of their ecological hazards and the mechanisms of their effects.
源自植物的次生代谢产物,如黄酮类化合物、生物碱和萜类化合物,因其生物活性和广泛分布而得到越来越多的利用。尽管它们的药理用途和农业应用已得到充分研究,但它们作为内分泌干扰化合物(EDC)在非靶标环境生物中的潜在作用在很大程度上仍不为人知。本综述旨在更新我们对环境测试模型中植物衍生代谢产物诱导的内分泌干扰效应的认识。我们回顾了用于评估内分泌干扰的标准化测试方法的指南和概念模型,并确定了与环境物种相比,哺乳动物测试系统背景下的关键数据差距。我们还强调了已知的内分泌机制,包括雌激素和甲状腺途径的调节及其对环境物种繁殖和激素调节的影响。通过整合不同生物系统的证据,这项工作旨在在毒理学和生态学视角之间建立联系,以探讨植物衍生代谢产物作为潜在EDC在自然生态系统中的新作用。重要的是,我们强调需要对植物衍生代谢产物进行广泛评估,以增进对其生态危害及其作用机制的理解。