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大鼠肾脏代谢需求的性别与昼夜节律调节:建模分析

Sex and circadian regulation of metabolic demands in the rat kidney: A modeling analysis.

作者信息

Dutta Pritha, Layton Anita T

机构信息

Department of Applied Mathematics, University of Waterloo, Waterloo, Ontario, Canada.

Cheriton School of Computer Science, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

PLoS One. 2024 Jul 17;19(7):e0293419. doi: 10.1371/journal.pone.0293419. eCollection 2024.

Abstract

Renal hemodynamics, renal transporter expression levels, and urine excretion exhibit circadian variations. Disruption of these diurnal patterns is associated with the pathophysiology of hypertension and chronic kidney disease. Renal hemodynamics determines oxygen delivery, whereas renal transport and metabolism determines oxygen consumption; the balance between them yields renal oxygenation which also demonstrates 24-h periodicity. Another notable modulator of kidney function is sex, which has impacts on renal hemodynamics and transport function that are regulated by as well as independent of the circadian clock. The goal of this study was to investigate the diurnal and sexual variations in renal oxygen consumption and oxygenation. For this purpose, we developed computational models of rat kidney function that represent sexual dimorphism and circadian variation in renal hemodynamics and transporter activities. Model simulations predicted substantial differences in tubular Na+ transport and oxygen consumption among different nephron segments. We also simulated the effect of loop diuretics, which are used in the treatment of renal hypoxia, on medullary oxygen tension. Our model predicted a significantly higher effect of loop diuretics on medullary oxygenation in female rats compared to male rats and when administered during the active phase.

摘要

肾血流动力学、肾转运体表达水平和尿液排泄呈现昼夜变化。这些昼夜模式的破坏与高血压和慢性肾脏病的病理生理学相关。肾血流动力学决定氧输送,而肾转运和代谢决定氧消耗;它们之间的平衡产生肾氧合,肾氧合也呈现24小时周期性。另一个值得注意的肾功能调节因素是性别,其对肾血流动力学和转运功能有影响,这些影响受昼夜节律钟调节且独立于昼夜节律钟。本研究的目的是调查肾氧消耗和氧合的昼夜及性别差异。为此,我们构建了大鼠肾功能计算模型,该模型体现了肾血流动力学和转运体活性的性别二态性及昼夜变化。模型模拟预测了不同肾单位节段间肾小管钠转运和氧消耗的显著差异。我们还模拟了用于治疗肾缺氧的袢利尿剂对髓质氧张力的影响。我们的模型预测,与雄性大鼠相比,袢利尿剂对雌性大鼠髓质氧合的影响显著更高,且在活动期给药时影响更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f53d/11253979/1f3e0368a95e/pone.0293419.g001.jpg

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