...
首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Development of a pro-arrhythmic ex vivo intact human and porcine model: cardiac electrophysiological changes associated with cellular uncoupling
【24h】

Development of a pro-arrhythmic ex vivo intact human and porcine model: cardiac electrophysiological changes associated with cellular uncoupling

机译:开发促足心律失常的INVIVO完整的人和猪模型:与细胞解耦相关的心脏电生理学变化

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

We describe a human and large animal Langendorff experimental apparatus for live electrophysiological studies and measure the electrophysiological changes due to gap junction uncoupling in human and porcine hearts. The resultant ex vivo intact human and porcine model can bridge the translational gap between smaller simple laboratory models and clinical research. In particular, electrophysiological models would benefit from the greater myocardial mass of a large heart due to its effects on far-field signal, electrode contact issues and motion artefacts, consequently more closely mimicking the clinical setting. Porcine (n = 9) and human (n = 4) donor hearts were perfused on a custom-designed Langendorff apparatus. Epicardial electrograms were collected at 16 sites across the left atrium and left ventricle. A total of 1 mM of carbenoxolone was administered at 5 ml/min to induce cellular uncoupling, and then recordings were repeated at the same sites. Changes in electrogram characteristics were analysed. We demonstrate the viability of a controlled ex vivo model of intact porcine and human hearts for electrophysiology with pharmacological modulation. Carbenoxolone reduces cellular coupling and changes contact electrogram features. The time from stimulus artefact to (-dV/dt)(max)increased between baseline and carbenoxolone (47.9 +/- 4.1-67.2 +/- 2.7 ms) indicating conduction slowing. The features with the largest percentage change between baseline and carbenoxolone were fractionation + 185.3%, endpoint amplitude - 106.9%, S-endpoint gradient + 54.9%, S point - 39.4%, RS ratio + 38.6% and (-dV/dt)(max)- 20.9%. The physiological relevance of this methodological tool is that it provides a model to further investigate pharmacologically induced pro-arrhythmic substrates.
机译:我们描述了一种用于活体电生理研究的人和大型动物Langendorff实验装置,并测量了人和猪心由于缝隙连接解偶联引起的电生理变化。由此产生的离体完整人和猪模型可以弥合较小的简单实验室模型和临床研究之间的翻译差距。特别是,由于大心脏的心肌质量对远场信号、电极接触问题和运动伪影的影响,电生理模型将受益于更大的心肌质量,从而更接近临床环境。猪(n=9)和人(n=4)供体心脏在定制设计的Langendorff装置上灌注。在左心房和左心室的16个部位采集心外膜电图。以5ml/min的速度给药1mM的卡宾诺酮以诱导细胞解偶联,然后在相同的部位重复记录。分析电图特征的变化。我们证明了完整猪和人心脏的受控离体模型的可行性,用于具有药理学调节的电生理学。卡宾诺酮减少细胞耦合,改变接触电图特征。从刺激伪影到(-dV/dt)(max)的时间在基线检查和卡宾诺酮(47.9+/-4.1-67.2+/-2.7ms)之间增加,表明传导减慢。基线检查与卡宾诺酮之间变化百分比最大的特征是分馏+185.3%,终点波幅-106.9%,S终点梯度+54.9%,S点-39.4%,RS比率+38.6%和(-dV/dt)(最大值)-20.9%。这种方法学工具的生理相关性在于,它为进一步研究药物诱导的促心律失常底物提供了一个模型。

著录项

  • 来源
  • 作者单位

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Engn South Kensington Campus Exhibit Rd London SW7 2AZ England;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Harefield Hosp Hill End Rd Harefield UB9 6JH Middx England;

    Univ London Royal Vet Coll Hawkshead Lane Hatfield AL9 7TA Herts England;

    Univ London Royal Vet Coll Hawkshead Lane Hatfield AL9 7TA Herts England;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Engn South Kensington Campus Exhibit Rd London SW7 2AZ England;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

    Imperial Coll London Fac Engn South Kensington Campus Exhibit Rd London SW7 2AZ England;

    Imperial Coll London Fac Med Natl Heart &

    Lung Inst Hammersmith Campus Du Cane Rd London W12;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Langendorff; Ex vivo model; Isolated heart; Contact electrogram; Gap junction uncoupling; Carbenoxolone;

    机译:Langendorff;前体内模型;孤立的心脏;接触电节图;间隙结界面;碳诺诺酮;

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