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首页> 外文期刊>Science in China. Series C, Life sciences >Ethanol disrupts the formation of hypochord and dorsal aorta during the development of embryonic zebrafish
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Ethanol disrupts the formation of hypochord and dorsal aorta during the development of embryonic zebrafish

机译:在胚胎斑马鱼的发育过程中,乙醇会破坏下弦和背主动脉的形成

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Exposure to ethanol during human embryonic period has severe teratogenic effects on the cardiovascular system. In our study, we demonstrated that ethanol of gradient concentrations can interfere with the establishment of circulatory system in embryonic zebrafish. The effective concentration to cause 50% malformations (EC_(50)) was 182.5 mmol/L. The ethanol pulse exposure experiment displayed that dome stage during embryogenesis is the sensitive time window to ethanol. It is found that 400 mmol/L ethanol pulse exposure can induce circulatory defects in 43% treated embryos. We ruled out the possibility that ethanol can interfere with the process of hematopoiesis in zebrafish. By employing in situ hybridization with endothelial bio-marker (Flk-1), we revealed that ethanol disrupts the establishment of trunk axial vasculature, but has no effect on cranial vessels. Combined with the results of semi-thin histological sections, the in situ hybridization experiments with arterial and venous biomarkers (ephrinB2, ephB4) suggested that ethanol mainly interrupts the development of dorsal aorta while has little effect on axial vein. Further study indicated the negative influence of ethanol on the development of hypochord in zebrafish. The consequent lack of vasculogenic factors including Radar and Ang-1 partly explains the defects in formation and integrity of dorsal aorta. These results provide important clues to the study of adverse effects of ethanol on the cardiovascular development in human fetus.
机译:在人类胚胎期接触乙醇会对心血管系统产生严重的致畸作用。在我们的研究中,我们证明了梯度浓度的乙醇会干扰胚胎斑马鱼循环系统的建立。导致50%畸形的有效浓度(EC_(50))为182.5 mmol / L。乙醇脉冲暴露实验表明,胚胎发生过程中的圆顶阶段是对乙醇敏感的时间窗口。已发现400 mmol / L乙醇脉冲暴露可在43%处理过的胚胎中引起循环缺陷。我们排除了乙醇可能干扰斑马鱼造血过程的可能性。通过与内皮生物标志物(Flk-1)进行原位杂交,我们发现乙醇破坏了躯干轴向脉管系统的建立,但对颅骨血管没有影响。结合半薄组织​​切片的结果,与动静脉生物标记(ephrinB2,ephB4)的原位杂交实验表明,乙醇主要干扰背主动脉的发育,而对轴静脉的影响很小。进一步的研究表明,乙醇对斑马鱼的线粒体发育具有负面影响。因此缺乏血管生成因子,包括Radar和Ang-1,部分解释了背主动脉形成和完整性方面的缺陷。这些结果为研究乙醇对人胎儿心血管发育的不良影响提供了重要线索。

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