Vial Guillaume, Le Guen Marie, Lamarche Frédéric, Detaille Dominique, Cottet-Rousselle Cécile, Demaison Luc, Hininger-Favier Isabelle, Theurey Pierre, Crouzier David, Debouzy Jean-Claude, Dubouchaud Hervé, Fontaine Éric
Facultés de médecine Charles Mérieux Lyon-Sud et Rockfeller, INSERM U-1060 Laboratoire CarMeN Université Lyon 1, INRA 1235, INSA de Lyon, Lyon, France European Center For Nutrition and Health, Centre Hospitalier Lyon Sud, Pierre-Bénite, France
Laboratoire de Bioénergétique Fondamentale et Appliquée (LBFA) et SFR Biologie Environnementale et Systémique (BEeSy), INSERM U-1055, Grenoble, France Joseph Fourier University, Grenoble, France.
Physiol Rep. 2016 Feb;4(3). doi: 10.14814/phy2.12686. Epub 2016 Feb 4.
The aim of this study was to characterize the early alterations of the liver mitochondrial function in ZDF (fa/fa) rats that develop diabetes compared to that of their lean counterparts ZDF (fa/+). Liver mitochondrial function was examined in 11- and 14-week-old ZDF (fa/fa) and ZDF lean (fa/+) rats. Oxygen consumption, H2O2 release, calcium retention capacity (CRC), membrane potential, membrane fluidity, and fatty acid composition were analyzed. State 3 oxygen consumption with palmitoyl-carnitine increases between 11 and 14 weeks of age in lean but not in diabetic animals. This response was not seen with other substrates, suggesting that the use of fatty acids is impaired in diabetic rats. H2O2 release was lower in 14-week-old ZDF (fa/fa) rats as compared to ZDF lean (fa/+). These changes were not associated with differences in enzymatic activities of the respiratory complexes, suggesting regulatory mechanisms independent of their expression levels. Membrane fluidity and composition analyses show only slight effects linked to diabetes progression. The most salient feature was a reduction in CRC in the presence of CsA, an effect reflecting PTP dysregulation. Our data suggest few changes of mitochondrial function in ZDF fa/fa rats. At the age of 11 weeks, liver mitochondria have mainly a reduced effect of CsA on CRC.
本研究的目的是表征与瘦型对照ZDF(fa/+)大鼠相比,发生糖尿病的ZDF(fa/fa)大鼠肝脏线粒体功能的早期改变。在11周龄和14周龄的ZDF(fa/fa)和ZDF瘦型(fa/+)大鼠中检测肝脏线粒体功能。分析了氧气消耗、过氧化氢释放、钙保留能力(CRC)、膜电位、膜流动性和脂肪酸组成。在瘦型动物中,11至14周龄期间,棕榈酰肉碱刺激的状态3氧气消耗增加,而糖尿病动物则无此变化。其他底物未出现这种反应,表明糖尿病大鼠对脂肪酸的利用受损。与ZDF瘦型(fa/+)相比,14周龄的ZDF(fa/fa)大鼠过氧化氢释放较低。这些变化与呼吸复合体酶活性的差异无关,提示存在独立于其表达水平的调节机制。膜流动性和组成分析显示,与糖尿病进展相关的影响较小。最显著的特征是在环孢素A存在下CRC降低,这一效应反映了线粒体通透性转换孔(PTP)失调。我们的数据表明,ZDF fa/fa大鼠线粒体功能变化较少。在11周龄时,肝脏线粒体中环孢素A对CRC的影响主要降低。