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Biological therapies targeting arrhythmias: Are cells and genes the answer?

机译:靶向心律失常的生物疗法:答案是细胞和基因吗?

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Introduction: Arrhythmias can cause symptoms ranging from simple dizziness to life-threatening circulatory collapse. Current management includes medical therapy and procedures such as catheter ablation or device implantation. However, these strategies still pose a risk of serious side effects, and some patients remain symptomatic. Advancement in our understanding of how arrhythmias develop on the cellular level has made more targeted approaches possible. In addition, contemporary studies have found that several genes are involved in the pathogenesis of arrhythmias. Areas covered: In the present review, the authors explore the cellular and genetic mechanisms leading to arrhythmias as well as the progress that has been made in using both gene and cell therapy to treat tachy- and bradyarrhythmias. They also consider why gene and cell therapy has resulted into a few clinical trials with promising results, however still not applicable in routine clinical practice. Expert opinion: The question currently is whether such biological therapies could replace current established approaches. The contemporary evidence suggests that despite recent advances in this field, it will need more work in experimental models before this is applied into clinical practice. Gene and cell studies targeting conduction and repolarization are promising, but still not ready for use in the clinical setting.
机译:介绍:心律失常会导致症状从简单的头晕到生命威胁的循环崩溃。目前的管理包括医疗治疗和导管消融或设备植入等程序。然而,这些策略仍然造成严重副作用的风险,有些患者仍然存在症状。我们理解心律失常如何对蜂窝水平的理解推进使得可能具有更多目标方法。此外,当代研究发现,几种基因参与了心律失常的发病机制。所涉及的地区:在本综述中,作者探讨了导致心律失常的细胞和遗传机制以及使用基因和细胞疗法治疗Tachy和Bradyarrhythmias的进展。他们还考虑为什么基因和细胞疗法导致一些具有有前途的临床试验,然而仍然不适用于常规的临床实践。专家意见:该问题目前是这种生物疗法是否可以取代现有的现状方法。当代证据表明,尽管最近在这一领域进展,但在应用于临床实践之前,它将需要更多的实验模型工作。靶向传导和复极性的基因和细胞研究是有前途的,但仍未准备好用于临床环境。

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