Clément Pierre, Sarda Nicole, Cespuglio Raymond, Gharib Abdallah
Inserm unit U480 and IFR19, Claude Bernard University, Lyon, France.
J Neurochem. 2004 Aug;90(4):848-56. doi: 10.1111/j.1471-4159.2004.02529.x.
Variations occurring in cortical nitric oxide (NO) release were analysed with a voltametric method in rats (i) placed in control conditions, (ii) while being paradoxical sleep deprived (PSD), or (iii) recovering from a PSD. Activities of neuronal (nNOS) and inducible (iNOS) NO-synthases as well as nNOS expression were also determined in several brain regions. In baseline conditions, circadian variations in nNOS expression and activity were maximal during the dark period and minimal during the light one for all the structures analysed (frontal cortex, pons and medulla). In the same way, cortical NO release occurred through a circadian rhythm exhibiting maxima and minima during dark and light periods, respectively. In the same experimental conditions, iNOS activity did not exhibit time-dependent changes. The correlative changes observed in baseline conditions between NO release, nNOS expression and activity within the frontal cortex were disrupted during PSD and subsequent recovery. Still again, iNOS activity remained unchanged. Results obtained point out that the tight coupling existing in control conditions between nNOS expression-activity and NO release is disrupted by a PSD and remains affected during the subsequent 24 h recovery. Their significance is discussed.
采用伏安法分析了处于以下三种状态的大鼠皮质一氧化氮(NO)释放的变化:(i)处于对照条件下;(ii)进行异相睡眠剥夺(PSD)时;(iii)从PSD状态恢复时。还测定了几个脑区中神经元型(nNOS)和诱导型(iNOS)一氧化氮合酶的活性以及nNOS的表达。在基线条件下,对于所有分析的结构(额叶皮质、脑桥和延髓),nNOS表达和活性的昼夜变化在黑暗期最大,在光照期最小。同样,皮质NO释放通过昼夜节律发生,分别在黑暗期和光照期出现最大值和最小值。在相同的实验条件下,iNOS活性未表现出时间依赖性变化。在PSD及随后的恢复过程中,额叶皮质内NO释放、nNOS表达和活性在基线条件下观察到的相关变化被破坏。同样,iNOS活性保持不变。所得结果指出,PSD会破坏对照条件下nNOS表达 - 活性与NO释放之间存在的紧密耦合,并在随后的24小时恢复过程中仍然受到影响。对其意义进行了讨论。