DocumentCode :
54955
Title :
Novel Flurometric Tool to Assess Mitochondrial Redox State of Isolated Perfused Rat Lungs After Exposure to Hyperoxia
Author :
Sepehr, Reyhaneh ; Audi, Said H. ; Staniszewski, Kevin S. ; Haworth, Steven T. ; Jacobs, Elizabeth R. ; Ranji, Mahsa
Author_Institution :
Dept. of Electr. Eng., Univ. of Wisconsin Milwaukee, Milwaukee, WI, USA
Volume :
1
fYear :
2013
fDate :
2013
Firstpage :
1500210
Lastpage :
1500210
Abstract :
Recently, we demonstrated the utility of optical fluorometry to detect a change in the redox status of mitochondrial autofluorescent coenzymes nicotinamide adenine dinucleotide (NADH) and oxidized form of flavin adenine dinucleotide (FADH2) (FAD), as a measure of mitochondrial function in isolated perfused rat lungs (IPL). The objective of this paper was to utilize optical fluorometry to evaluate the effect of rat exposure to hyperoxia (>95% O2 for 48 h) on lung tissue mitochondrial redox status of NADH and FAD in a nondestructive manner in IPL. Surface NADH and FAD signals were measured before and after lung perfusion with perfusate containing rotenone (ROT, complex I inhibitor), potassium cyanide (KCN, complex IV inhibitor), and/or pentachlorophenol (PCP, uncoupler). ROTor KCN-induced increase in NADH signal is considered a measure of complex I activity, and KCN-induced decrease in FAD signal is considered a measure of complex II activity. The results show that hyperoxia decreased complex I and II activities by 63% and 55%, respectively, when compared to lungs of rats exposed to room air (normoxic rats). Mitochondrial complex I and II activities in lung homogenates were also lower (77% and 63%, respectively) for hyperoxic than for normoxic lungs. These results suggest that the mitochondrial matrix is more reduced in hyperoxic lungs than in normoxic lungs, and demonstrate the ability of optical fluorometry to detect a change in mitochondrial redox state of hyperoxic lungs prior to histological changes characteristic of hyperoxia.
Keywords :
biochemistry; biological tissues; biomedical optical imaging; cellular biophysics; drugs; enzymes; inhibitors; lung; molecular biophysics; oxidation; oxygen; patient treatment; reduction (chemical); O2; flavin adenine dinucleotide; histological change characteristics; hyperoxic rat lungs; isolated perfused rat lungs; lung tissue mitochondrial redox status; mitochondrial autofluorescent coenzyme nicotinamide adenine dinucleotide; mitochondrial redox state; normoxic rat lungs; optical fluorometry; oxygen; pentachlorophenol; potassium cyanide; room air; rotenone; time 48 h; Biochemistry; Bioemedical optical imaging; Inhibitors; Injuries; Lungs; Molecular biophysics; Oxidation; Patient treatment; Rats; NADH dehydrogenase (complex I); Nicotinamide Adenine Dinucleotide (NADH); flavin adenine dinucleotide $({rm FADH}_{2})$; lung surface fluorometry; mitochondrial redox; succinate dehydrogenase (complex II);
fLanguage :
English
Journal_Title :
Translational Engineering in Health and Medicine, IEEE Journal of
Publisher :
ieee
ISSN :
2168-2372
Type :
jour
DOI :
10.1109/JTEHM.2013.2285916
Filename :
6634235
Link To Document :
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