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巴黎皂素Ⅰ通过上调 p53 通路和下调 wnt 通路诱导斑马鱼产生毒性。

Paris saponin Ⅰ induce toxicity in zebrafish by up-regulation of p53 pathway and down-regulation of wnt pathway.

机构信息

Department of Endocrinology, Guang' Anmen Hospital of China Academy of Chinese Medical Sciences, Beijing, 100053, China.

Department of Pharmacy, China-Japan Friendship Hospital, Beijing, 100029, China.

出版信息

Toxicon. 2023 Jun 1;228:107094. doi: 10.1016/j.toxicon.2023.107094. Epub 2023 Mar 30.

Abstract

Paris saponin I, II, and VII are three important components in Paris polyphylla, which have been widely studied as tumor cytotoxic drugs, but their safety in vivo has not been reported. Therefore, this study evaluated the safety of these three drugs based on the zebrafish model. Firstly, the lethality curves and lethal concentration of 50% (LC) values of the three saponins were determined and the results showed the values of LC of Paris saponin I, II, and VII were 122.2, 210.7, 566.2 ng/mL, respectively. And then our data revealed that Paris saponin I, II and VII had definite hepatotoxicity, as shown by their significant reduction in the liver area and fluorescence intensity of zebrafish. Besides, Paris saponin Ⅰ affected the heart rate of zebrafish obviously, suggesting its cardiovascular toxicity. Afterwards, we found Paris saponin Ⅰ and Ⅶ reduced the area and fluorescence intensity of kidney in zebrafish, and had mild nephrotoxicity. And when treated with Paris saponin I, the pathological section of liver tissue in zebrafish showed vacuoles, severe necrosis of hepatocytes, and then the apoptosis of hepatocytes could be observed by TUNEL staining. Eventually, we found that the genes expression of p53, Bax and β-catenin changed significantly in the administration group of Paris saponin I. In general, our study proved Paris saponin Ⅰ was the most toxic of the three saponins, and the most definite toxic target sites were liver and cardiovascular. And it was further inferred that the totoxicity of Paris saponin Ⅰ may be related to the regulation of p53 pathway and Wnt pathway. These results above showed the toxicity of the three saponins in zebrafish, suggesting their safety should be paid more attention in the future.

摘要

重楼皂苷 I、II 和 VII 是重楼中的三种重要成分,已被广泛研究为肿瘤细胞毒性药物,但它们在体内的安全性尚未报道。因此,本研究基于斑马鱼模型评估了这三种药物的安全性。首先,测定了三种皂苷的致死率曲线和半数致死浓度(LC)值,结果表明重楼皂苷 I、II 和 VII 的 LC 值分别为 122.2、210.7 和 566.2ng/mL。然后,我们的数据显示重楼皂苷 I、II 和 VII 具有明确的肝毒性,表现为它们显著减少了斑马鱼的肝区和荧光强度。此外,重楼皂苷 I 明显影响了斑马鱼的心率,表明其具有心血管毒性。之后,我们发现重楼皂苷 I 和 VII 降低了斑马鱼的肾脏面积和荧光强度,具有轻度肾毒性。当用重楼皂苷 I 处理时,斑马鱼肝组织的病理切片显示出空泡,肝细胞严重坏死,然后通过 TUNEL 染色可以观察到肝细胞凋亡。最后,我们发现重楼皂苷 I 给药组中 p53、Bax 和 β-catenin 基因的表达发生了显著变化。总的来说,我们的研究证明重楼皂苷 I 是三种皂苷中毒性最大的,最明确的毒性靶器官是肝脏和心血管系统。并且可以进一步推断,重楼皂苷 I 的毒性可能与 p53 通路和 Wnt 通路的调节有关。这些结果表明三种皂苷在斑马鱼中的毒性,提示未来应更加关注它们的安全性。

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