Hypoxia-inducible factor-1α activation improves renal oxygenation and mitochondrial function in early chronic kidney disease

被引:45
|
作者
Thomas, Joanna L. [1 ]
Pham, Hai [2 ,3 ]
Li, Ying [2 ,3 ]
Hall, Elanore [2 ,3 ]
Perkins, Guy A. [4 ]
Ali, Sameh S. [3 ,5 ,6 ]
Patel, Hemal H. [3 ,6 ]
Singh, Prabhleen [2 ,3 ]
机构
[1] Mercer Univ, Sch Engn, Dept Biomed Engn, Macon, GA 31207 USA
[2] Univ Calif San Diego, Dept Med, Div Nephrol & Hypertens, 3350 La Jolla Village Dr,MC 111-H, San Diego, CA 92161 USA
[3] VA San Diego Healthcare Syst, San Diego, CA USA
[4] Natl Ctr Microscopy & Imaging Res, La Jolla, CA USA
[5] Zewail City Sci & Technol, Helmy Inst Med Sci, Ctr Aging & Associated Dis, Giza, Egypt
[6] Univ Calif San Diego, Dept Anesthesiol, San Diego, CA 92103 USA
基金
美国国家卫生研究院;
关键词
hypoxia; metabolism; mitochondria; oxygenation; HUMAN SKELETAL-MUSCLE; REMNANT KIDNEY; TUBULOGLOMERULAR FEEDBACK; GLOMERULAR-FILTRATION; SUBTOTAL NEPHRECTOMY; ANGIOTENSIN-II; INJURY; CONSUMPTION; DYSFUNCTION; DYNAMICS;
D O I
10.1152/ajprenal.00579.2016
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The pathophysiology of chronic kidney disease (CKD) is driven by alterations in surviving nephrons to sustain renal function with ongoing nephron loss. Oxygen supply-demand mismatch, due to hemodynamic adaptations, with resultant hypoxia, plays an important role in the pathophysiology in early CKD. We sought to investigate the underlying mechanisms of this mismatch. We utilized the subtotal nephrectomy (STN) model of CKD to investigate the alterations in renal oxygenation linked to sodium (Na) transport and mitochondrial function in the surviving nephrons. Oxygen delivery was significantly reduced in STN kidneys because of lower renal blood flow. Fractional oxygen extraction was significantly higher in STN. Tubular Na reabsorption was significantly lower per mole of oxygen consumed in STN. We hypothesized that decreased mitochondrial bioenergetic capacity may account for this and uncovered significant mitochondrial dysfunction in the early STN kidney: higher oxidative metabolism without an attendant increase in ATP levels, elevated superoxide levels, and alterations in mitochondrial morphology. We further investigated the effect of activation of hypoxia-inducible factor-1 alpha (HIF-1 alpha), a master regulator of cellular hypoxia response. We observed significant improvement in renal blood flow, glomerular filtration rate, and tubular Na reabsorption per mole of oxygen consumed with HIF-1 alpha activation. Importantly, HIF-1 alpha activation significantly lowered mitochondrial oxygen consumption and superoxide production and increased mitochondrial volume density. In conclusion, we report significant impairment of renal oxygenation and mitochondrial function at the early stages of CKD and demonstrate the beneficial role of HIF-1 alpha activation on renal function and metabolism.
引用
收藏
页码:F282 / F290
页数:9
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