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Zebrafish Inform Atrial Fibrillation Strategy

机译:斑马鱼通知心房颤动策略

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Researchers have shown a possible link between a genetic variation and the widespread type of cardiac arrhythmia, atrial fibrillation (AF). The scientists conducted the study in zebrafish, which is a recognized scientific animal model within cardiac research. Scientists from the University of Copenhagen in Denmark and the Max Planck Institute in Germany focused on the gene pitx2c. Surprisingly, according to Assistant Professor Pia Lundegaard from the Department of Biomedical Sciences, “It seems that we may also have to think of atrial fibrillation as an atrial cardiomyopathy—that is, a challenged heart—rather than as a purely electrical disorder.” , Unexpectedly, the researchers did not uncover disturbances in the ion channels that spread electrical signals between the heart’s muscle cells. In contrast, they discovered defects in the structure of the heart muscle and the mitochondria that function as the cell’s power plant. The defects already occurred in the fetal stage of the fish and deteriorated exponentially with age. “Usually the structure of a cross-section of the sarcomeres—the muscle fibers—shows a very fine grid structure,” Dr. Lundegaard explained. “But in these fish, it is clear that the structure is disorganized from a very early stage,” she said, adding, “At the same time, we can see in our pictures that there are too many mitochondria. So, it seems that the heart is trying to compensate for the defective muscle fibers. This indicates that there is a structural defect in the heart which over time will cause a rhythm defect.”
机译:研究人员在遗传变异和广泛的心脏心律失常,心房颤动(AF)之间存在可能的联系。科学家们在斑马鱼中进行了研究,这是一种心脏研究中公认的科学动物模型。来自哥本哈根大学的科学家在丹麦和德国的Max Planck Institute专注于Gene Pitx2C。令人惊讶的是,据助理Pia Lundegaard从生物医学科学系的顾问,“似乎我们也可能不得不将心房颤动作为心房心肌病 - 即挑战性的心脏 - 而不是纯粹的电气疾病。” ,出乎意料地,研究人员在离子通道中没有发现在心脏肌肉细胞之间传播电信号的离子通道中的干扰。相反,它们发现了心肌和线粒体结构的缺陷,其用作细胞的电厂。缺陷已经发生在鱼的胎儿阶段,随着年龄的年龄呈指数级化而恶化。 “通常是SARCOMERES的横截面的结构 - 肌肉纤维 - 显示出非常细的网格结构,”Lundegaard博士解释说。 “但在这些鱼中,很明显,这种结构从一个早期的阶段进行了混乱,”她说,“同时,我们可以在我们的照片中看到有太多线粒体的线粒体。因此,似乎心脏正试图弥补缺陷的肌肉纤维。这表明心脏中存在结构缺陷,随着时间的推移会导致节奏缺陷。“

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