Torrealba F, Bustos G, Montero V M
Facultad de Ciencias Biológicas, Pontificia Universidad Católica de Chile, Santiago, Chile.
Neurochem Int. 1996 May-Jun;28(5-6):625-31. doi: 10.1016/0197-0186(95)00130-1.
The identity of the postulated excitatory transmitter released by glomus cells is not known. Since our preliminary work on paraffin sections of the cat carotid body indicated that most glomus cells were intensely immunoreactive to glutamate, we decided to investigate whether glutamate might be such a transmitter, using two approaches. One approach was to make a quantitative immunogold analysis of ultrathin sections to assess the level of glutamate immunoreactivity of glomus cells relative to glia and to afferent axon terminals. The other approach was to measure the potassium-induced release of glutamate from carotid bodies superfused in vitro. We consistently found that glomus cell profiles had 50% more immunogold particles per unit of area than glial cell or axonal profiles. However, the levels of glutamate immunoreactivity of glomus cells were lower than those expected for glutamatergic terminals. We also found that glutamate was not released from in vitro carotid bodies stimulated with high concentrations of potassium. These findings indicate that the oxygen-sensitive glomus cells have a high concentration of glutamate, which is not released by superfusion with high potassium. Thus, glutamate is not the excitatory transmitter released by glomus cells. We speculate that the high concentrations of glutamate might instead be related to the known dependence of the "in vitro" chemosensory activity on metabolic substrates.
目前尚不清楚由球细胞释放的假定兴奋性递质的身份。由于我们对猫颈动脉体石蜡切片的初步研究表明,大多数球细胞对谷氨酸具有强烈的免疫反应性,我们决定采用两种方法来研究谷氨酸是否可能是这样一种递质。一种方法是对超薄切片进行定量免疫金分析,以评估球细胞相对于神经胶质细胞和传入轴突终末的谷氨酸免疫反应水平。另一种方法是测量体外灌流的颈动脉体中钾诱导的谷氨酸释放。我们一致发现,每单位面积的球细胞轮廓比神经胶质细胞或轴突轮廓具有多50%的免疫金颗粒。然而,球细胞的谷氨酸免疫反应水平低于谷氨酸能终末预期的水平。我们还发现,高浓度钾刺激的体外颈动脉体不释放谷氨酸。这些发现表明,对氧敏感的球细胞具有高浓度的谷氨酸,其不会因高钾灌流而释放。因此,谷氨酸不是球细胞释放的兴奋性递质。我们推测,高浓度的谷氨酸可能反而与“体外”化学感受活动对代谢底物的已知依赖性有关。