Scientific Research Center, Anxi County Hospital, Quanzhou, People's Republic of China.
State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Xiamen University, Xiamen, People's Republic of China.
Environ Sci Pollut Res Int. 2024 Jul;31(32):44789-44799. doi: 10.1007/s11356-024-34024-z. Epub 2024 Jul 2.
Cyprodinil, a globally utilized broad-spectrum pyrimidine amine fungicide, has been observed to elicit cardiac abnormality. Resveratrol (RSV), a naturally occurring polyphenolic compound, showcases remarkable defensive properties in nurturing cardiac development. To investigate whether RSV could protect against cyprodinil-induced cardiac defects, we exposed zebrafish embryos to cyprodinil (500 μg/L) in the presence or absence of RSV (1 μM). Our results showed that RSV significantly mitigated the decrease of survival rate and embryo movement and the hatching delay induced by cyprodinil. In addition, RSV also improved cyprodinil-induced zebrafish cardiac developmental toxicity, including pericardial edema and cardiac function impairment. In mechanism, RSV attenuated the cyprodinil-induced changes in mRNA expression involved in cardiac development, such as myh6, myl7, tbx5, and gata4, and calcium ion channels, such as ncx1h, slc8a4a, and atp2a2b. We further showed that RSV might inhibit the activity of aryl hydrocarbon receptor (AhR) signaling pathways induced by cyprodinil. In summary, our findings establish that the protective effects of RSV against the cardiac developmental toxicity are induced by cyprodinil due to its remarkable ability to inhibit AhR activity. Our findings not only shed light on a new avenue for regulating and ensuring the safe utilization of cyprodinil but also presents a novel concept to promote its responsible use.
环丙嘧啶是一种广泛应用于全球的广谱嘧啶胺类杀菌剂,已被观察到会引起心脏异常。白藜芦醇(RSV)是一种天然存在的多酚化合物,在促进心脏发育方面具有显著的保护特性。为了研究 RSV 是否可以预防环丙嘧啶引起的心脏缺陷,我们将斑马鱼胚胎暴露于环丙嘧啶(500μg/L)中,并在存在或不存在 RSV(1μM)的情况下进行实验。我们的结果表明,RSV 显著减轻了环丙嘧啶引起的存活率和胚胎运动下降以及孵化延迟。此外,RSV 还改善了环丙嘧啶引起的斑马鱼心脏发育毒性,包括心包水肿和心脏功能障碍。在机制上,RSV 减轻了环丙嘧啶诱导的心脏发育相关 mRNA 表达的变化,如 myh6、myl7、tbx5 和 gata4 以及钙通道,如 ncx1h、slc8a4a 和 atp2a2b。我们进一步表明,RSV 可能抑制环丙嘧啶诱导的芳香烃受体(AhR)信号通路的活性。总之,我们的研究结果表明,RSV 对心脏发育毒性的保护作用是由环丙嘧啶引起的,因为它具有显著抑制 AhR 活性的能力。我们的研究结果不仅为调节和确保环丙嘧啶的安全利用提供了新途径,而且提出了一个促进其负责任使用的新概念。