Krukoff T L, Turton W E, Calaresu F R
Am J Physiol. 1986 Aug;251(2 Pt 2):R268-73. doi: 10.1152/ajpregu.1986.251.2.R268.
Metabolic studies using the 2-[14C]deoxy-D-glucose and cytochrome oxidase techniques have demonstrated changes in the activity of central sites associated with the hypothalamoneurohypophysial system in water-deprived (WD) and diabetes insipidus (DI) rats. Another method that may be used as an index of metabolic activity in discrete regions of the central nervous system is the measurement of hexokinase (HK) activity. This study describes changes in metabolic activity, as measured by HK histochemistry, in regions of the forebrain of WD and DI rats. Significant increases in HK activity measured by densitometric analysis were observed in the magnocellular component of the paraventricular nucleus of the hypothalamus, supraoptic nucleus, nucleus circularis, and neurohypophysis of WD and DI rats. In addition, increased HK activity was observed in the preoptic area and subfornical organ of DI rats. These data demonstrate that metabolic changes occur in the forebrain of WD and DI rats within structures involved in body fluid regulation. The present study also demonstrates that HK histochemistry may be used as a marker of metabolic activity in discrete regions of the central nervous system.
利用2-[14C]脱氧-D-葡萄糖和细胞色素氧化酶技术进行的代谢研究表明,缺水(WD)和尿崩症(DI)大鼠中,与下丘脑神经垂体系统相关的中枢位点活性发生了变化。另一种可作为中枢神经系统离散区域代谢活动指标的方法是测量己糖激酶(HK)活性。本研究描述了通过HK组织化学测量的WD和DI大鼠前脑区域代谢活动的变化。通过密度分析测量发现,WD和DI大鼠下丘脑室旁核的大细胞成分、视上核、环状核和神经垂体中的HK活性显著增加。此外,在DI大鼠的视前区和穹窿下器官中也观察到HK活性增加。这些数据表明,在参与体液调节的结构中,WD和DI大鼠的前脑发生了代谢变化。本研究还表明,HK组织化学可作为中枢神经系统离散区域代谢活动的标志物。