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Primary Molecular Disorders and Secondary Biological Adaptations in Bartter Syndrome

机译:易感综合征的原发性分子疾病和继发性生物学适应

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Bartter syndrome is a hereditary disorder that has been characterized by the association of hypokalemia, alkalosis, and the hypertrophy of the juxtaglomerular complex with secondary hyperaldosteronism and normal blood pressure. By contrast, the genetic causes of Bartter syndrome primarily affect molecular structures directly involved in the sodium reabsorption at the level of the Henle loop. The ensuing urinary sodium wasting and chronic sodium depletion are responsible for the contraction of the extracellular volume, the activation of the renin-aldosterone axis, the secretion of prostaglandins, and the biological adaptations of downstream tubular segments, meaning the distal convoluted tubule and the collecting duct. These secondary biological adaptations lead to hypokalemia and alkalosis, illustrating a close integration of the solutes regulation in the tubular structures.
机译:Bartter综合征是一种遗传性疾病,其特征为低血钾,碱中毒,近肾小管复合体肥大,继发性醛固酮增多症和正常血压。相比之下,Bartter综合征的遗传原因主要在Henle环水平影响直接参与钠重吸收的分子结构。随之而来的尿钠浪费和慢性钠耗竭负责细胞外体积的收缩,肾素-醛固酮轴的活化,前列腺素的分泌以及下游肾小管节段的生物学适应性,这意味着远端的螺旋状小管和收集物管。这些继发的生物学适应导致低血钾和碱中毒,说明了溶质调节在管状结构中的紧密结合。

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