首页> 外文期刊>Cardiovascular Research >Animal and in silico models for the study of sarcomeric cardiomyopathies
【24h】

Animal and in silico models for the study of sarcomeric cardiomyopathies

机译:用于研究肌节型心肌病的动物和计算机模型

获取原文
获取原文并翻译 | 示例
           

摘要

Over the past decade, our understanding of cardiomyopathies has improved dramatically, due to improvements in screening and detection of gene defects in the human genome as well as a variety of novel animal models (mouse, zebrafish, and drosophila) and in silico computational models. These novel experimental tools have created a platform that is highly complementary to the naturally occurring cardiomyopathies in cats and dogs that had been available for some time. A fully integrative approach, which incorporates all these modalities, is likely required for significant steps forward in understanding the molecular underpinnings and pathogenesis of cardiomyopathies. Finally, novel technologies, including CRISPR/Cas9, which have already been proved to work in zebrafish, are currently being employed to engineer sarcomeric cardiomyopathy in larger animals, including pigs and non-human primates. In the mouse, the increased speed with which these techniques can be employed to engineer precise 'knock-in' models that previously took years to make via multiple rounds of homologous recombination-based gene targeting promises multiple and precise models of human cardiac disease for future study. Such novel genetically engineered animal models recapitulating human sarcomeric protein defects will help bridging the gap to translate therapeutic targets from small animal and in silico models to the human patient with sarcomeric cardiomyopathy.
机译:在过去的十年中,由于对人类基因组以及各种新型动物模型(小鼠,斑马鱼和果蝇)和计算机模拟模型中基因缺陷的筛选和检测的改进,我们对心肌病的理解有了极大的提高。这些新颖的实验工具创造了一个平台,该平台与已经存在一段时间的猫和狗中自然发生的心肌病高度互补。全面的方法,包括所有这些模式,可能是迈向了解心肌病的分子基础和发病机理的重要步骤所必需的。最后,包括CRISPR / Cas9在内的新技术已被证明可在斑马鱼中起作用,目前正被用于改造包括猪和非人灵长类在内的大型动物的肌节型心肌病。在小鼠中,利用这些技术来构建精确的“敲入”模型的速度提高了,该模型以前需要花费数年的时间才能通过多轮基于同源重组的基因靶向来制造,从而有望为未来的人类心脏病建立多种精确模型研究。概述人类肌节蛋白缺陷的这种新颖的基因工程动物模型将有助于弥合差距,将治疗目标从小型动物和计算机模型转化为患有肌节型心肌病的人类患者。

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