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Cell and gene therapy for arrhythmias: Repair of cardiac conduction damage 被引量:3

Cell and gene therapy for arrhythmias: Repair of cardiac conduction damage
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摘要 在 sinoatrial 节点(圣)产生的行动潜力 heart.Subsequently 统治一个健康的人的节奏和率,这些行动潜力在一个心罐头原因 arrhythmias.For 例子经由它推动产生或繁殖的传导系统 .Abnormalities 宣传到整个心,心房与心室的节点的圣机能障碍或传导块能导致当前与另外的手传导损坏可以引起的植入的电子 pacemaker.On 被对待的严肃的 Action potentials generated in the sinoatrial node (SAN) dominate the rhythm and rate of a healthy human heart. Subsequently, these action potentials propagate to the whole heart via its conduction system. Abnormalities of impulse generation and/or propagation in a heart can cause arrhythmias. For example, SAN dysfunction or conduction block of the atrioventricular node can lead to serious bradycardia which is currently treated with an implanted electronic pacemaker. On the other hand, conduction damage may cause reentrant tachyarrhythmias which are primarily treated pharmacologically or by medical device-based therapies, including defibrillation and tissue ablation. However, drug therapies sometimes may not be effective or are associated with serious side effects. Device-based therapies for cardiac arrhythmias, even with well developed technology, still face inadequacies, limitations, hardware complications, and other challenges. Therefore, scientists are actively seeking other alternatives for antiarrhythmic therapy. In particular, cells and genes used for repairing cardiac conduction damage/defect have been investigated in various studies both in vitro and in vivo. Despite the complexities of the excitation and conduction systems of the heart, cell and gene-based strategies provide novel alternatives for treatment or cure of cardiac arrhythmias. This review summarizes some highlights of recent research progress in this field.
作者 Yong-Fu Xiao
出处 《Journal of Geriatric Cardiology》 SCIE CAS CSCD 2011年第3期147-158,共12页 老年心脏病学杂志(英文版)
关键词 抗心律失常 基因治疗 传导阻滞 损伤修复 心脏 细胞 动作电位 医疗设备 cell therapy gene therapy conduction repair arrhythmia
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