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首页> 外文期刊>Journal of molecular cell biology >Attractor landscape analysis of the cardiac signaling network reveals mechanism-based therapeutic strategies for heart failure
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Attractor landscape analysis of the cardiac signaling network reveals mechanism-based therapeutic strategies for heart failure

机译:心脏信号网络的吸引者景观分析揭示了基于机制的心力衰竭治疗策略

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Apoptosis and hypertrophy of cardiomyocytes are the primary causes of heart failure (HF), a global leading cause of death, and are regulated through the complicated intracellular signaling network, limiting the development of effective treatments due to its complexity. To identify effective therapeutic strategies for HF at a system level, we develop a large-scale comprehensive mathematical model of the cardiac signaling network by integrating all available experimental evidence. Attractor landscape analysis of the network model identifies distinct sets of control nodes that effectively suppress apoptosis and hypertrophy of cardiomyocytes under ischemic or pressure overload-induced HF, the two major types of HF. Intriguingly, our system-level analysis suggests that intervention of these control nodes may increase the efficacy of clinical drugs for HF and, of most importance, different combinations of control nodes are suggested as potentially effective candidate drug targets depending on the types of HF. Our study provides a systematic way of developing mechanism-based therapeutic strategies for HF.
机译:心肌细胞的凋亡和肥大是导致心脏衰竭(HF)的主要原因,它是全球性的主要死亡原因,并通过复杂的细胞内信号网络进行调控,由于其复杂性,限制了有效治疗方法的开发。为了确定系统水平的HF的有效治疗策略,我们通过整合所有可用的实验证据,开发了心脏信号网络的大规模综合数学模型。对网络模型的吸引者态势分析确定了不同的控制结点集,这些结点在缺血性或压力超负荷诱导的HF(HF的两种主要类型)下有效抑制了心肌细胞的凋亡和肥大。有趣的是,我们的系统级分析表明,对这些控制节点的干预可能会提高临床药物治疗HF的功效,最重要的是,根据HF的类型,建议将控制节点的不同组合作为潜在有效的候选药物靶标。我们的研究提供了开发基于机制的HF治疗策略的系统方法。

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