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急性碱负荷时,Secretin 受体缺失可损害小鼠肾脏碳酸氢盐排泄并加重代谢性碱中毒。

Loss of the Secretin Receptor Impairs Renal Bicarbonate Excretion and Aggravates Metabolic Alkalosis in Mice during Acute Base-Loading.

机构信息

Department of Biomedicine, Aarhus University, Aarhus, Denmark.

Department of Biomedical Sciences, Copenhagen University, Copenhagen, Denmark.

出版信息

J Am Soc Nephrol. 2023 Aug 1;34(8):1329-1342. doi: 10.1681/ASN.0000000000000173. Epub 2023 Jun 22.

Abstract

SIGNIFICANCE STATEMENT

During acute base excess, the renal collecting duct β -intercalated cells ( β -ICs) become activated to increase urine base excretion. This process is dependent on pendrin and cystic fibrosis transmembrane regulator (CFTR) expressed in the apical membrane of β -ICs. The signal that leads to activation of this process was unknown. Plasma secretin levels increase during acute alkalosis, and the secretin receptor (SCTR) is functionally expressed in β -ICs. We find that mice with global knockout for the SCTR lose their ability to acutely increase renal base excretion. This forces the mice to lower their ventilation to cope with this challenge. Our findings suggest that secretin is a systemic bicarbonate-regulating hormone, likely being released from the small intestine during alkalosis.

BACKGROUND

The secretin receptor (SCTR) is functionally expressed in the basolateral membrane of the β -intercalated cells of the kidney cortical collecting duct and stimulates urine alkalization by activating the β -intercalated cells. Interestingly, the plasma secretin level increases during acute metabolic alkalosis, but its role in systemic acid-base homeostasis was unclear. We hypothesized that the SCTR system is essential for renal base excretion during acute metabolic alkalosis.

METHODS

We conducted bladder catheterization experiments, metabolic cage studies, blood gas analysis, barometric respirometry, perfusion of isolated cortical collecting ducts, immunoblotting, and immunohistochemistry in SCTR wild-type and knockout (KO) mice. We also perfused isolated rat small intestines to study secretin release.

RESULTS

In wild-type mice, secretin acutely increased urine pH and pendrin function in isolated perfused cortical collecting ducts. These effects were absent in KO mice, which also did not sufficiently increase renal base excretion during acute base loading. In line with these findings, KO mice developed prolonged metabolic alkalosis when exposed to acute oral or intraperitoneal base loading. Furthermore, KO mice exhibited transient but marked hypoventilation after acute base loading. In rats, increased blood alkalinity of the perfused upper small intestine increased venous secretin release.

CONCLUSIONS

Our results suggest that loss of SCTR impairs the appropriate increase of renal base excretion during acute base loading and that SCTR is necessary for acute correction of metabolic alkalosis. In addition, our findings suggest that blood alkalinity increases secretin release from the small intestine and that secretin action is critical for bicarbonate homeostasis.

摘要

意义陈述

在急性基础过剩期间,肾脏集合管β-闰细胞(β-ICs)被激活以增加尿液基础排泄。这个过程依赖于β-ICs 顶膜中表达的 pendrin 和囊性纤维化跨膜调节剂(CFTR)。导致这个过程激活的信号是未知的。在急性碱中毒期间,血浆分泌素水平增加,而分泌素受体(SCTR)在β-ICs 中功能性表达。我们发现,全身性敲除 SCTR 的小鼠失去了急性增加肾脏基础排泄的能力。这迫使小鼠降低通气来应对这一挑战。我们的发现表明,分泌素是一种系统性碳酸氢盐调节激素,可能在碱中毒期间从小肠释放。

背景

分泌素受体(SCTR)在肾脏皮质集合管的β-闰细胞的基底外侧膜中功能性表达,并通过激活β-闰细胞来刺激尿液碱化。有趣的是,在急性代谢性碱中毒期间,血浆分泌素水平增加,但它在全身酸碱平衡中的作用尚不清楚。我们假设 SCTR 系统对于急性代谢性碱中毒期间的肾脏基础排泄是必不可少的。

方法

我们在 SCTR 野生型和敲除(KO)小鼠中进行了膀胱导管插入术实验、代谢笼研究、血气分析、气压呼吸计、分离皮质集合管灌注、免疫印迹和免疫组织化学。我们还灌注了分离的大鼠小肠以研究分泌素的释放。

结果

在野生型小鼠中,分泌素急性增加了分离灌注的皮质集合管中的尿 pH 值和 pendrin 功能。这些作用在 KO 小鼠中不存在,KO 小鼠在急性基础加载时也不能充分增加肾脏基础排泄。与这些发现一致的是,KO 小鼠在暴露于急性口服或腹腔内基础加载时发展为持久的代谢性碱中毒。此外,KO 小鼠在急性基础加载后表现出短暂但明显的通气过度。在大鼠中,灌注的上小肠的血液碱度增加增加了静脉分泌素的释放。

结论

我们的结果表明,SCTR 的缺失会损害急性基础加载时肾脏基础排泄的适当增加,并且 SCTR 对于急性代谢性碱中毒的纠正是必要的。此外,我们的发现表明,血液碱度增加了小肠分泌素的释放,分泌素的作用对于碳酸氢盐平衡至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa05/10400107/56fd168e4f9e/jasn-34-1329-g001.jpg

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