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腺苷 1 型受体缺陷小鼠肾小球 - 肾小管平衡受损。

Glomerular tubular balance is suppressed in adenosine type 1 receptor-deficient mice.

机构信息

Dept. of Medicine, Georgetown University, 4000 Reservoir Rd., Washington, DC 20057, USA.

出版信息

Am J Physiol Renal Physiol. 2010 Nov;299(5):F1158-63. doi: 10.1152/ajprenal.00202.2010. Epub 2010 Sep 1.

Abstract

Glomerular tubular balance maintains a stable fractional solute and fluid reabsorption in the proximal tubule over a range of glomerular filtration rates. The mediators of this process are unknown. We tested the hypothesis that adenosine, produced in proximal tubule cells acting on adenosine type 1 receptors (A(1)-AR) promotes Na(+) and fluid uptake and mediates glomerular tubular balance. Absolute proximal fluid reabsorption (J(v)) was measured by in vivo microperfusion in A(1)-AR knockout and wild-type mice during perfusion of the closed proximal tubule at 2-10 nl/min. J(v) increased with perfusate flow from 2-4 nl/min in both strains, but the fractional increase was lower in A(1)-AR(-/-) mice (A(1)-AR(+/+): 114% vs. A(1)-AR(-/-): 38%; P < 0.001), suggesting reduced glomerular tubular balance (GTB). At higher perfusion rates, J(v) increased modestly in both strains, indicating less GTB at higher flow. The physiological effects of reduced GTB in A(1)-AR(-/-) mice were assessed from the response to an acute volume load (1 ml/2 min). Na(+) excretion and urine flow increased 76 and 73% more in A(1)-AR(-/-) mice than A(1)-AR(+/+) over the following 30 min, accompanied by a higher proximal tubule flow (A(1)-AR(-/-): 6.9 ± 0.9 vs. A(1)-AR(+/+): 5.2 ± 0.6 nl/min; P < 0.05). The expression of the sodium-hydrogen exchanger 3 and sodium phosphate cotransporter-2 were similar between strains. In conclusion, GTB is dependent on adenosine acting on type 1 receptors in the proximal tubule. This may contribute to acute changes in Na(+) and fluid reabsorption.

摘要

肾小球小管平衡在一定的肾小球滤过率范围内维持近端小管中稳定的溶质和液体重吸收分数。该过程的介质尚不清楚。我们检验了这样一个假设,即在近端小管细胞中产生的腺苷作用于腺苷 1 型受体(A1-AR)促进 Na+和液体摄取,并介导肾小球小管平衡。通过在 2-10 nl/min 的封闭近端小管中灌注时,在体内微灌注中测量 A1-AR 敲除和野生型小鼠的绝对近端液体重吸收(Jv)。在两种品系中,Jv 随着灌流液从 2-4 nl/min 增加,但 A1-AR(-/-)小鼠的分数增加较低(A1-AR(+/+):114%比 A1-AR(-/-):38%;P < 0.001),提示肾小球小管平衡(GTB)降低。在较高的灌注率下,两种品系的 Jv 都适度增加,表明在较高的流量下 GTB 较低。A1-AR(-/-)小鼠 GTB 降低的生理影响通过对急性容量负荷(1 ml/2 min)的反应来评估。与 A1-AR(+/+)相比,在接下来的 30 分钟内,A1-AR(-/-)小鼠的 Na+排泄和尿量分别增加了 76%和 73%,同时近端小管流量也增加(A1-AR(-/-):6.9 ± 0.9 vs. A1-AR(+/+):5.2 ± 0.6 nl/min;P < 0.05)。两种品系的钠-氢交换器 3 和钠-磷共转运体-2 的表达相似。总之,GTB 依赖于近端小管中 1 型受体的腺苷作用。这可能有助于 Na+和液体重吸收的急性变化。

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