Functional integration of electrically active cardiac derivatives from genetically engineered human embryonic stem cells with quiescent recipient ventricular cardiomyocytes -: Insights into the development of cell-based pacemakers

被引:352
作者
Xue, T [1 ]
Cho, HC [1 ]
Akar, FG [1 ]
Tsang, SY [1 ]
Jones, SP [1 ]
Marbán, E [1 ]
Tomaselli, GF [1 ]
Li, RA [1 ]
机构
[1] Johns Hopkins Univ, Dept Med, Baltimore, MD 21205 USA
关键词
stem cells; cardiac development; viruses; gene therapy; pacemakers;
D O I
10.1161/01.CIR.0000151313.18547.A2
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background - Human embryonic stem cells (hESCs) derived from blastocysts can propagate indefinitely in culture while maintaining pluripotency, including the ability to differentiate into cardiomyocytes (CMs); therefore, hESCs may provide an unlimited source of human CMs for cell-based therapies. Although CMs can be derived from hESCs ex vivo, it remains uncertain whether a functional syncytium can be formed between donor and recipient cells after engraftment. Methods and Results - Using a combination of electrophysiological and imaging techniques, here we demonstrate that electrically active, donor CMs derived from hESCs that had been stably genetically engineered by a recombinant lentivirus can functionally integrate with otherwise-quiescent, recipient, ventricular CMs to induce rhythmic electrical and contractile activities in vitro. The integrated syncytium was responsive to the beta-adrenergic agonist isoproterenol as well as to other pharmacological agents such as lidocaine and ZD7288. Similarly, a functional hESC-derived pacemaker could be implanted in the left ventricle in vivo. Detailed optical mapping of the epicardial surface of guinea pig hearts transplanted with hESC-derived CMs confirmed the successful spread of membrane depolarization from the site of injection to the surrounding myocardium. Conclusions - We conclude that electrically active, hESC-derived CMs are capable of actively pacing quiescent, recipient, ventricular CMs in vitro and ventricular myocardium in vivo. Our results may lead to an alternative or a supplemental method for correcting defects in cardiac impulse generation, such as cell-based pacemakers.
引用
收藏
页码:11 / 20
页数:10
相关论文
共 39 条
[1]   CONDUCTION-VELOCITY DEPRESSION AND DRUG-INDUCED VENTRICULAR TACHYARRHYTHMIAS - EFFECTS OF LIDOCAINE IN THE INTACT CANINE HEART [J].
ANDERSON, KP ;
WALKER, R ;
LUX, RL ;
ERSHLER, PR ;
MENLOVE, R ;
WILLIAMS, MR ;
KRALL, R ;
MODDRELLE, D .
CIRCULATION, 1990, 81 (03) :1024-1038
[2]   Haematopoietic stem cells adopt mature haematopoietic fates in ischaemic myocardium [J].
Balsam, LB ;
Wagers, AJ ;
Christensen, JL ;
Kofidis, T ;
Weissman, IL ;
Robbins, RC .
NATURE, 2004, 428 (6983) :668-673
[3]   Differentiation of pluripotent embryonic stem cells into cardiomyocytes [J].
Boheler, KR ;
Czyz, J ;
Tweedie, D ;
Yang, HT ;
Anisimov, SV ;
Wobus, AM .
CIRCULATION RESEARCH, 2002, 91 (03) :189-201
[4]   INHIBITORY ACTIONS OF ZENECA-ZD7288 ON WHOLE-CELL HYPERPOLARIZATION-ACTIVATED INWARD CURRENT (I(F)) IN GUINEA-PIG DISSOCIATED SINOATRIAL NODE CELLS [J].
BOSMITH, RE ;
BRIGGS, I ;
STURGESS, NC .
BRITISH JOURNAL OF PHARMACOLOGY, 1993, 110 (01) :343-349
[5]  
CHO H, 2003, BIOPHYS J, V86, pA293
[6]   Multiply attenuated, self-inactivating lentiviral vectors efficiently deliver and express genes for extended periods of time in adult rat cardiomyocytes in vivo [J].
Fleury, S ;
Simeoni, E ;
Zuppinger, C ;
Déglon, N ;
von Segesser, LK ;
Kappenberger, L ;
Vassalli, G .
CIRCULATION, 2003, 107 (18) :2375-2382
[7]   Stem cell therapy for ischemic heart disease [J].
Hassink, RJ ;
Dowell, JD ;
de la Rivière, AB ;
Doevendans, PA ;
Field, LJ .
TRENDS IN MOLECULAR MEDICINE, 2003, 9 (10) :436-441
[8]   Human embryonic stem cells develop into multiple types of cardiac myocytes - Action potential characterization [J].
He, JQ ;
Ma, Y ;
Lee, Y ;
Thomson, JA ;
Kamp, TJ .
CIRCULATION RESEARCH, 2003, 93 (01) :32-39
[9]   DENOVO METHYLATION AND EXPRESSION OF RETROVIRAL GENOMES DURING MOUSE EMBRYOGENESIS [J].
JAHNER, D ;
STUHLMANN, H ;
STEWART, CL ;
HARBERS, K ;
LOHLER, J ;
SIMON, I ;
JAENISCH, R .
NATURE, 1982, 298 (5875) :623-628
[10]   ELECTRICAL UNCOUPLING AND IMPULSE PROPAGATION IN ISOLATED SHEEP PURKINJE-FIBERS [J].
JALIFE, J ;
SICOURI, S ;
DELMAR, M ;
MICHAELS, DC .
AMERICAN JOURNAL OF PHYSIOLOGY, 1989, 257 (01) :H179-H189