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肾集合管产生的血管加压素对于尿液的正常浓缩或稀释并非必不可少。

Kidney collecting duct-derived vasopressin is not essential for appropriate concentration or dilution of urine.

作者信息

Zuchowski Yvonne, Carty Joshua S, Trapani Jonathan B, Watts Jason A, Bock Fabian, Zhang Mingzhi, Terker Andrew S, Zent Roy, Delpire Eric, Harris Raymond C, Arroyo Juan Pablo

机构信息

Division of Nephrology and Hypertension, Department of Medicine, Vanderbilt University Medical Center, Nashville, Tennessee, United States.

Vanderbilt University School of Medicine, Nashville, Tennessee, United States.

出版信息

Am J Physiol Renal Physiol. 2024 Jun 1;326(6):F1091-F1100. doi: 10.1152/ajprenal.00057.2024. Epub 2024 May 2.

Abstract

We have previously shown that kidney collecting ducts make vasopressin. However, the physiological role of collecting duct-derived vasopressin is uncertain. We hypothesized that collecting duct-derived vasopressin is required for the appropriate concentration of urine. We developed a vasopressin conditional knockout (KO) mouse model wherein Cre recombinase expression induces deletion of arginine vasopressin () exon 1 in the distal nephron. We then used age-matched 8- to 12-wk-old fl/fl;-Cre(-) [wild type (WT)] and fl/fl;-Cre(+) mice for all experiments. We collected urine, serum, and kidney lysates at baseline. We then challenged both WT and knockout (KO) mice with 24-h water restriction, water loading, and administration of the vasopressin type 2 receptor agonist desmopressin (1 µg/kg ip) followed by the vasopressin type 2 receptor antagonist OPC-31260 (10 mg/kg ip). We performed immunofluorescence and immunoblot analysis at baseline and confirmed vasopressin KO in the collecting duct. We found that urinary osmolality (UOsm), plasma Na, K, Cl, blood urea nitrogen, and copeptin were similar in WT vs. KO mice at baseline. Immunoblots of the vasopressin-regulated proteins Na-K-2Cl cotransporter, NaCl cotransporter, and water channel aquaporin-2 showed no difference in expression or phosphorylation at baseline. Following 24-h water restriction, WT and KO mice had no differences in UOsm, plasma Na, K, Cl, blood urea nitrogen, or copeptin. In addition, there were no differences in the rate of urinary concentration or dilution as in WT and KO mice UOsm was nearly identical after desmopressin and OPC-31260 administration. We conclude that collecting duct-derived vasopressin is not essential to appropriately concentrate or dilute urine. Hypothalamic vasopressin is required for appropriate urinary concentration. However, whether collecting duct-derived vasopressin is involved remains unknown. We developed a novel transgenic mouse model to induce tissue-specific deletion of vasopressin and showed that collecting duct-derived vasopressin is not required to concentrate or dilute urine.

摘要

我们之前已经表明肾集合管可产生血管加压素。然而,集合管源性血管加压素的生理作用尚不确定。我们推测集合管源性血管加压素对于尿液的适当浓缩是必需的。我们构建了一种血管加压素条件性敲除(KO)小鼠模型,其中Cre重组酶的表达诱导远端肾单位中精氨酸血管加压素()外显子1的缺失。然后我们使用年龄匹配的8至12周龄的fl/fl;-Cre(-) [野生型(WT)]和fl/fl;-Cre(+)小鼠进行所有实验。我们在基线时收集尿液、血清和肾脏裂解物。然后我们对WT和敲除(KO)小鼠进行24小时限水、水负荷试验,并给予2型血管加压素受体激动剂去氨加压素(1μg/kg腹腔注射),随后给予2型血管加压素受体拮抗剂OPC-31260(10mg/kg腹腔注射)。我们在基线时进行免疫荧光和免疫印迹分析,并证实集合管中血管加压素敲除。我们发现基线时WT与KO小鼠的尿渗透压(UOsm)、血浆Na、K、Cl、血尿素氮和 copeptin相似。血管加压素调节蛋白钠钾氯共转运体、氯化钠共转运体和水通道水通道蛋白-2的免疫印迹显示基线时表达或磷酸化无差异。24小时限水后,WT和KO小鼠的UOsm、血浆Na、K、Cl、血尿素氮或copeptin无差异。此外,在给予去氨加压素和OPC-31260后,WT和KO小鼠的尿浓缩或稀释速率无差异,因为它们的UOsm几乎相同。我们得出结论,集合管源性血管加压素对于适当浓缩或稀释尿液并非必不可少。下丘脑血管加压素对于适当的尿浓缩是必需的。然而,集合管源性血管加压素是否参与其中仍不清楚。我们构建了一种新型转基因小鼠模型以诱导血管加压素的组织特异性缺失,并表明集合管源性血管加压素对于浓缩或稀释尿液并非必需。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f0/11381022/5d7e270b5267/f-00057-2024r01.jpg

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