Alterations of cellular bioenergetics in pulmonary artery endothelial cells

被引:309
作者
Xu, Weiling
Koeck, Thomas
Lara, Abigail R.
Neumann, Donald
DiFilippo, Frank P.
Koo, Michelle
Janocha, Allison J.
Masri, Fares A.
Arroliga, Alejandro C.
Jennings, Constance
Dweik, Raed A.
Tuder, Rubin M.
Stuehr, Dennis J.
Erzurum, Serpil C.
机构
[1] Cleveland Clin, Lerner Res Inst, Dept Pathobiol, Cleveland, OH 44195 USA
[2] Cleveland Clin, Dept Pulm & Crit Care Med, Cleveland, OH 44195 USA
[3] Cleveland Clin, Dept Nucl Med, Cleveland, OH 44195 USA
[4] Johns Hopkins Univ, Sch Med, Div Cardiopulm Pathol, Baltimore, MD 21205 USA
关键词
cellular respiration; nitric oxide; oxygen consumption; pulmonary hypertension; mitochondrion;
D O I
10.1073/pnas.0605080104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Idiopathic pulmonary arterial hypertension (IPAH) is pathogenetically related to low levels of the vasodilator nitric oxide (NO). Because NO regulates cellular respiration and mitochondrial biogenesis, we hypothesized that abnormalities of bioenergetics may be present in IPAH. Evaluation of pulmonary artery enclothelial cells from IPAH and control lungs in vitro revealed that oxygen consumption of IPAH cells was decreased, especially in state 3 respiration with substrates glutamate-malate or succinate, and this decrease paralleled reduction in Complex IV activity and IPAH cellular NO synthesis. IPAH pulmonary artery endothelial cells had decreased mitochondrial dehydrogenase activity and lowered mitochondrial numbers per cell and mitochondrial DNA content, all of which increased after exposure to NO donors. Although IPAH/pulmonary artery enclothelial cells' ATP content was similar to control under normoxia, cellular ATP did not change significantly in IPAH cells under hypoxia, whereas ATP decreased 35% in control cells, identifying a greater dependence on cellular respiration for energy in control cells. Evidence that glucose metabolism was subserving the primary role for energy requirements of IPAH cells was provided by the approximate to 3-fold greater glycolytic rate of IPAH cells. Positron emission tomography scan with [F-18]fluoro-deoxy-D-glucose performed on IPAH patients and healthy controls revealed significantly higher uptake in IPAH lungs as compared with controls, confirming that the glycolytic rate was increased in vivo. Thus, there are substantial changes in bioenergetics of IPAH enclothelial cells, which may have consequences for pulmonary hypertensive responses and potentially in development of novel imaging modalities for diagnosis and evaluation of treatment.
引用
收藏
页码:1342 / 1347
页数:6
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