Bioartificial sinus node constructed via in vivo gene transfer of an engineered pacemaker HCN channel reduces the dependence on electronic pacemaker in a sick-sinus syndrome model

被引:123
作者
Tse, Hung-Fat
Xue, Tian
Lau, Chu-Pak
Siu, Chung-Wah
Wang, Kai
Zhang, Qing-Yong
Tomaselli, Gordon F.
Akar, Fadi G.
Li, Ronald A.
机构
[1] Univ Hong Kong, Queen Mary Hosp, Dept Med, Hong Kong, Hong Kong, Peoples R China
[2] Johns Hopkins Univ, Dept Med, Baltimore, MD USA
[3] Univ Calif Davis, Dept Cell Biol & Human Anat, Davis, CA 95616 USA
[4] Univ Calif Davis, Stem Cell Program, Davis, CA 95616 USA
[5] Shriners Hosp Children N Amer, Inst Pediat Regenerat Med, Sacramento, CA USA
关键词
sinoatrial node; pacemakers; therapy; engineering; ion channels;
D O I
10.1161/CIRCULATIONAHA.106.615385
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background - The normal cardiac rhythm originates in the sinoatrial ( SA) node that anatomically resides in the right atrium. Malfunction of the SA node leads to various forms of arrhythmias that necessitate the implantation of electronic pacemakers. We hypothesized that overexpression of an engineered HCN construct via somatic gene transfer offers a flexible approach for fine-tuning cardiac pacing in vivo. Methods and Results - Using various electrophysiological and mapping techniques, we examined the effects of in situ focal expression of HCN1-Delta Delta Delta, the S3-S4 linker of which has been shortened to favor channel opening, on impulse generation and conduction. Single left ventricular cardiomyocytes isolated from guinea pig hearts preinjected with the recombinant adenovirus Ad-CMV-GFP-IRES-HCN1-Delta Delta Delta in vivo uniquely exhibited automaticity with a normal firing rate (237 +/- 12 bpm). High-resolution ex vivo optical mapping of Ad-CGI-HCN1-Delta Delta Delta-injected Langendorff-perfused hearts revealed the generation of spontaneous action potentials from the transduced region in the left ventricle. To evaluate the efficacy of our approach for reliable atrial pacing, we generated a porcine model of sick-sinus syndrome by guided radiofrequency ablation of the native SA node, followed by implantation of a dual-chamber electronic pacemaker to prevent bradycardia-induced hemodynamic collapse. Interestingly, focal transduction of Ad-CGI-HCN1-Delta Delta Delta in the left atrium of animals with sick-sinus syndrome reproducibly induced a stable, catecholamine-responsive in vivo "bioartificial node" that exhibited a physiological heart rate and was capable of reliably pacing the myocardium, substantially reducing electronic pacing. Conclusions - The results of the present study provide important functional and mechanistic insights into cardiac automaticity and have further refined an HCN gene - based therapy for correcting defects in cardiac impulse generation.
引用
收藏
页码:1000 / 1011
页数:12
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