首页> 外文期刊>Tropical Journal of Pharmaceutical Research >Protective role of Bu-Zhong-Yi-Qi decoction on aristolochic acid-intoxicated zebrafish
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Protective role of Bu-Zhong-Yi-Qi decoction on aristolochic acid-intoxicated zebrafish

机译:Bu-Zhong-yi-yi-QI汤对阿里通机陶醉的斑马鱼的保护作用

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Purpose: To investigate the potential nephroprotective effects of a traditional Chinese medical prescription, Bu-Zhong-Yi-Qi Decoction (BZYQD) in an aristolochic acid (AA)-intoxicated zebrafish model. Methods: A green fluorescent zebrafish line Tg (wt1b:EGFP) was used, and different exposure protocols were applied. Once a suitable protective concentration of BZYQD was found, antibody staining and real-time PCR methods were applied and the pro-inflammatory gene ex pressions were determined. Results: The results showed that low dose (10 ppm) of BZYQD attenuates the AA-induced malformed kidney phenotype. This finding was further substantiated by an examination of the integrity of pronephric tubes in the treated embryos. Pre-treatment with BZYQD suppressed the elevated ex pressions of pro-inflammatory genes, including tumor necrosis factor-α and myeloperoxidase, induced by AA exposure (1.6 ~ 2.3-fold). This indicates that the nephroprotective effect of BZYQD may be mediated by suppression of pro-inflammatory gene ex pression. On the other hand, a high dose (500 ppm) of BZYQD caused nephrotoxic effect. Conclusion: An efficient model to identify AA-protective compounds using zebrafish embryos has been successfully established. Using this strategy, it has been found that BZYQD is nephroprotective in zebrafish embryos, and might have the potential to be applied in humans.
机译:目的:探讨中医处方患者潜在的肾脏保护作用,在阿里斯托洛酸(AA)intxatical Zebrafish模型中的中医处,Bu-yi-yi-qi汤(Bzyqd)。方法:使用绿色荧光斑马鱼系TG(WT1B:EGFP),施加不同的暴露方案。一旦发现了合适的BZYQD保护浓度,施加了抗体染色和实时PCR方法,测定促炎基因Exclum。结果:结果表明,BZYQD的低剂量(10ppm)衰减了AA诱导的畸形肾表型。通过检查经处理的胚胎中的静脉级管的完整性进一步证实了该发现。用BZYQD预处理抑制了促炎基因的升高的前级,包括肿瘤坏死因子-α和髓过氧化物酶,由AA暴露(1.6〜2.3倍)诱导。这表明BZYQD的肾脏反应效果可以通过抑制促炎基因Exclion来介导。另一方面,高剂量(500ppm)的BZYQD引起了肾毒性作用。结论:成功地建立了使用斑马鱼胚胎鉴定AA保护化合物的有效模型。使用这种策略,已发现BZYQD在斑马鱼胚胎中是肾脏反应,并且可能有可能适用于人类。

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