Shi Yun-Wei, Yuan Wei, Wang Xin, Gong Jie, Zhu Shun-Xing, Chai Lin-Lin, Qi Jia-Ling, Qin Yin-Yin, Gao Yu, Zhou Yu-Ling, Fan Xiao-Le, Ji Chun-Ya, Wu Jia-Yi, Wang Zhi-Wei, Liu Dong
Co-innovation Center of Neuroregeneration, Jiangsu Key Laboratory of Neuroregeneration, Nantong University, Nantong, Jiangsu 226001, PRC.
School of life science, Nantong University, Nantong, Jiangsu 226001, PRC.
Sci Rep. 2016 Jul 25;6:30189. doi: 10.1038/srep30189.
Cis-stilbene combretastatin A-4 (CA-4) and a large group of its derivant compounds have been shown significant anti-angiogenesis activity. However the side effects even the toxicities of these chemicals were not evaluated adequately. The zebrafish model has become an important vertebrate model for evaluating drug effects. The testing of CA-4 on zebrafish is so far lacking and assessment of CA-4 on this model will provide with new insights of understanding the function of CA-4 on angiogenesis, the toxicities and side effects of CA-4. We discovered that 7-9 ng/ml CA-4 treatments resulted in developmental retardation and morphological malformation, and led to potent angiogenic defects in zebrafish embryos. Next, we demonstrated that intraperitoneal injection of 5, 10 and 20 mg/kg CA-4 obviously inhibited vessel plexus formation in regenerated pectoral fins of adult zebrafish. Interestingly, we proved that CA-4 treatment induced significant cell apoptosis in central nervous system of zebrafish embryos and adults. Furthermore, it was demonstrated that the neuronal apoptosis induced by CA-4 treatment was alleviated in p53 mutants. In addition, notch1a was up-regulated in CA-4 treated embryos, and inhibition of Notch signaling by DAPT partially rescued the apoptosis in zebrafish central nervous system caused by CA-4.
顺式二苯乙烯康普瑞他汀A-4(CA-4)及其大量衍生物已显示出显著的抗血管生成活性。然而,这些化学物质的副作用甚至毒性尚未得到充分评估。斑马鱼模型已成为评估药物效果的重要脊椎动物模型。目前缺乏对斑马鱼进行CA-4测试的相关研究,在该模型上对CA-4进行评估将为理解CA-4在血管生成中的作用、CA-4的毒性和副作用提供新的见解。我们发现,7-9 ng/ml的CA-4处理会导致斑马鱼胚胎发育迟缓、形态畸形,并导致严重的血管生成缺陷。接下来,我们证明腹腔注射5、10和20 mg/kg的CA-4能明显抑制成年斑马鱼再生胸鳍中血管丛的形成。有趣的是,我们证实CA-4处理会诱导斑马鱼胚胎和成年鱼中枢神经系统中的细胞显著凋亡。此外,研究表明在p53突变体中,CA-4处理诱导的神经元凋亡有所减轻。另外,在经CA-4处理的胚胎中notch1a上调,用DAPT抑制Notch信号通路可部分挽救CA-4引起的斑马鱼中枢神经系统中的细胞凋亡。