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肾淋巴管动力学。

Renal lymphatic vessel dynamics.

机构信息

Department of Pediatrics, Vanderbilt University Medical Center, Nashville, Tennessee.

Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, Tennessee.

出版信息

Am J Physiol Renal Physiol. 2020 Dec 1;319(6):F1027-F1036. doi: 10.1152/ajprenal.00322.2020. Epub 2020 Oct 26.

Abstract

Similar to other organs, renal lymphatics remove excess fluid, solutes, and macromolecules from the renal interstitium. Given the kidney's unique role in maintaining body fluid homeostasis, renal lymphatics may be critical in this process. However, little is known regarding the pathways involved in renal lymphatic vessel function, and there are no studies on the effects of drugs targeting impaired interstitial clearance, such as diuretics. Using pressure myography, we showed that renal lymphatic collecting vessels are sensitive to changes in transmural pressure and have an optimal range of effective pumping. In addition, they are responsive to vasoactive factors known to regulate tone in other lymphatic vessels including prostaglandin E and nitric oxide, and their spontaneous contractility requires Ca and Cl. We also demonstrated that Na-K-2Cl cotransporter Nkcc1, but not Nkcc2, is expressed in extrarenal lymphatic vessels. Furosemide, a loop diuretic that inhibits Na-K-2Cl cotransporters, induced a dose-dependent dilation in lymphatic vessels and decreased the magnitude and frequency of spontaneous contractions, thereby reducing the ability of these vessels to propel lymph. Ethacrynic acid, another loop diuretic, had no effect on vessel tone. These data represent a significant step forward in our understanding of the mechanisms underlying renal lymphatic vessel function and highlight potential off-target effects of furosemide that may exacerbate fluid accumulation in edema-forming conditions.

摘要

与其他器官一样,肾脏淋巴管从肾间质中清除多余的液体、溶质和大分子。鉴于肾脏在维持体液平衡方面的独特作用,肾脏淋巴管在这个过程中可能至关重要。然而,关于肾脏淋巴管功能的途径知之甚少,也没有关于针对受损间质清除率的药物(如利尿剂)影响的研究。通过压力肌描术,我们发现肾脏淋巴收集管对跨壁压的变化敏感,并且具有最佳的有效泵送范围。此外,它们对已知调节其他淋巴管张力的血管活性因子有反应,包括前列腺素 E 和一氧化氮,并且它们的自发性收缩需要 Ca 和 Cl。我们还证明,Na-K-2Cl 共转运蛋白 Nkcc1,但不是 Nkcc2,在肾外淋巴管中表达。呋塞米是一种抑制 Na-K-2Cl 共转运蛋白的袢利尿剂,可诱导淋巴管剂量依赖性扩张,并降低自发性收缩的幅度和频率,从而降低这些血管推动淋巴的能力。另一种袢利尿剂依他尼酸对血管张力没有影响。这些数据代表着我们对肾脏淋巴管功能的机制的理解向前迈出了重要的一步,并强调了呋塞米的潜在非靶标效应,这可能会加剧水肿形成条件下的液体积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a35/7792696/432972eae424/F-00322-2020r01.jpg

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