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Drosophila in the Heart of Understanding Cardiac Diseases: Modeling Channelopathies and Cardiomyopathies in the Fruitfly

机译:果蝇在了解心脏疾病的心脏:果蝇中的通道病和心肌病建模

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摘要

Cardiovascular diseases and, among them, channelopathies and cardiomyopathies are a major cause of death worldwide. The molecular and genetic defects underlying these cardiac disorders are complex, leading to a large range of structural and functional heart phenotypes. Identification of molecular and functional mechanisms disrupted by mutations causing channelopathies and cardiomyopathies is essential to understanding the link between an altered gene and clinical phenotype. The development of animal models has been proven to be efficient for functional studies in channelopathies and cardiomyopathies. In particular, the Drosophila model has been largely applied for deciphering the molecular and cellular pathways affected in these inherited cardiac disorders and for identifying their genetic modifiers. Here we review the utility and the main contributions of the fruitfly models for the better understanding of channelopathies and cardiomyopathies. We also discuss the investigated pathological mechanisms and the discoveries of evolutionarily conserved pathways which reinforce the value of Drosophila in modeling human cardiac diseases.
机译:心血管疾病,以及其中的通道病和心肌病是全世界范围内的主要死亡原因。这些心脏疾病的潜在分子和遗传缺陷非常复杂,从而导致多种结构和功能性心脏表型。鉴定引起通道病和心肌病的突变所破坏的分子和功能机制,对于理解改变的基因与临床表型之间的联系至关重要。动物模型的开发已被证明对通道病变和心肌病的功能研究有效。特别地,果蝇模型已被广泛用于解密在这些遗传性心脏病中受影响的分子和细胞途径,并用于鉴定其遗传修饰因子。在这里,我们回顾了果蝇模型的效用和主要贡献,以更好地了解通道病和心肌病。我们还讨论了研究的病理机制和进化保守途径的发现,这些途径增强了果蝇在模拟人类心脏疾病中的价值。

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