首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Complex cardiac defects after ethanol exposure during discrete cardiogenic events in zebrafish: Prevention with folic acid
【24h】

Complex cardiac defects after ethanol exposure during discrete cardiogenic events in zebrafish: Prevention with folic acid

机译:斑马鱼离散心源性事件期间暴露于乙醇后的复杂心脏缺陷:叶酸预防

获取原文
获取原文并翻译 | 示例
           

摘要

Background: Fetal alcohol spectrum disorder (FASD) describes a range of birth defects including various congenital heart defects (CHDs). Mechanisms of FASD-associated CHDs are not understood. Whether alcohol interferes with a single critical event or with multiple events in heart formation is not known. Results: Our zebrafish embryo experiments showed that ethanol interrupts different cardiac regulatory networks and perturbs multiple steps of cardiogenesis (specification, myocardial migration, looping, chamber morphogenesis, and endocardial cushion formation). Ethanol exposure during gastrulation until cardiac specification or during myocardial midline migration did not produce severe or persistent heart development defects. However, exposure comprising gastrulation until myocardial precursor midline fusion or during heart patterning stages produced aberrant heart looping and defective endocardial cushions. Continuous exposure during entire cardiogenesis produced complex cardiac defects leading to severely defective myocardium, endocardium, and endocardial cushions. Supplementation of retinoic acid with ethanol partially rescued early heart developmental defects, but the endocardial cushions did not form correctly. In contrast, supplementation of folic acid rescued normal heart development, including the endocardial cushions. Conclusions: Our results indicate that ethanol exposure interrupted divergent cardiac morphogenetic events causing heart defects. Folic acid supplementation was effective in preventing a wide spectrum of ethanol-induced heart developmental defects. Developmental Dynamics 242:1184-1201, 2013. Key Findings: Zebrafish FASD model showed that ethanol interrupts multiple steps of cardiogenesis. Ethanol exposure during zebrafish cardiogenesis produces persistent heart defects. Chronic ethanol exposure during cardiogenesis produces complex cardiac defects. Retinoic acid co-supplementation partially rescues ethanol-induced cardiac defects. Folic acid co-supplementation prevents a wide spectrum of ethanol-induced heart defects.
机译:背景:胎儿酒精谱系障碍(FASD)描述了一系列出生缺陷,包括各种先天性心脏缺陷(CHD)。与FASD相关的CHD的机制尚不清楚。酒精是否会干扰单个严重事件还是会干扰心脏形成的多个事件尚不清楚。结果:我们的斑马鱼胚胎实验表明,乙醇会打断不同的心脏调节网络,并扰乱心脏形成的多个步骤(规格,心肌迁移,循环,腔室形态发生和心内膜垫形成)。直到心脏健康或在胃中线迁移之前,在胃动期间的乙醇暴露不会产生严重或持续的心脏发育缺陷。但是,暴露直至心脏前体中线融合或在心脏构图阶段包括胃消化,都会产生异常的心脏循环和有缺陷的心内膜垫。在整个心脏发生过程中连续暴露会产生复杂的心脏缺陷,从而导致严重的心肌,心内膜和心内膜垫缺陷。用乙醇补充视黄酸可以部分挽救早期心脏发育缺陷,但心内膜垫不能正确形成。相反,补充叶酸可以挽救包括心脏内膜垫在内的正常心脏发育。结论:我们的结果表明,乙醇暴露会中断发散的心脏形态发生事件,从而导致心脏缺陷。叶酸补充剂可有效预防多种乙醇诱导的心脏发育缺陷。 Developmental Dynamics 242:1184-1201,2013。主要发现:Zebrafish FASD模型显示乙醇可打断心脏发生的多个步骤。斑马鱼心脏发生过程中的乙醇暴露会产生持续的心脏缺陷。在心脏发生过程中长期暴露于乙醇会产生复杂的心脏缺陷。维甲酸共同补充可以部分挽救乙醇引起的心脏缺陷。叶酸的共同补充可防止多种乙醇诱发的心脏缺陷。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号