In vivo multiphoton imaging of mitochondrial structure and function during acute kidney injury

被引:183
作者
Hall, Andrew M. [1 ]
Rhodes, George J. [2 ]
Sandoval, Ruben M. [2 ]
Corridon, Peter R. [2 ]
Molitoris, Bruce A. [2 ]
机构
[1] UCL, Royal Free Hosp, Ctr Nephrol, London NW3 2PF, England
[2] Indiana Univ Sch Med, Indiana Ctr Biol Microscopy, Dept Med, Div Nephrol, Indianapolis, IN USA
关键词
acute kidney injury; gentamicin; in vivo microscopy; ischemia; mitochondria; multiphoton imaging; CYCLOPHILIN D GENE; FLUORESCENCE SPECTROSCOPY; SUPEROXIDE-DISMUTASE; GLUTATHIONE LEVELS; PROXIMAL TUBULES; REACTIVE OXYGEN; RAT-KIDNEY; GENTAMICIN; METABOLISM; TRANSPORT;
D O I
10.1038/ki.2012.328
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
100201 [内科学]; 100221 [泌尿外科学];
摘要
Mitochondrial dysfunction has been implicated in the pathogenesis of acute kidney injury due to ischemia and toxic drugs. Methods for imaging mitochondrial function in cells using confocal microscopy are well established; more recently, it was shown that these techniques can be utilized in ex vivo kidney tissue using multiphoton microscopy. We extended this approach in vivo and found that kidney mitochondrial structure and function can be imaged in anesthetized rodents using multiphoton excitation of endogenous and exogenous fluorophores. Mitochondrial nicotinamide adenine dinucleotide increased markedly in rat kidneys in response to ischemia. Following intravenous injection, the mitochondrial membrane potential-dependent dye TMRM was taken up by proximal tubules; in response to ischemia, the membrane potential dissipated rapidly and mitochondria became shortened and fragmented in proximal tubules. In contrast, the mitochondrial membrane potential and structure were better maintained in distal tubules. Changes in mitochondrial structure, nicotinamide adenine dinucleotide, and membrane potential were found in the proximal, but not distal, tubules after gentamicin exposure. These changes were sporadic, highly variable among animals, and were preceded by changes in non-mitochondria! structures. Thus, real-time changes in mitochondrial structure and function can be imaged in rodent kidneys in vivo using multiphoton excitation of endogenous and exogenous fluorophores in response to ischemia-reperfusion injury or drug toxicity. Kidney International (2012) 83, 72-83; doi:10.1038/ki.2012.328; published online 19 September 2012
引用
收藏
页码:72 / 83
页数:12
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