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Metabolic mapping of neural pathways involved in gastrosecretory response to insulin hypoglycaemia in the rat

机译:大鼠胃肠道对胰岛素低血糖反应的神经通路的代谢图谱

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摘要

1. The central nervous structures involved in the gastrosecretory effect of insulin hypoglycaemia were investigated in twenty urethane-anaesthetized rats, previously provided with a chronic gastric fistula, by means of the 2-deoxy-D-[14C]glucose autoradiographic technique.2. Gastric secretion increased in animals in which plasma glucose concentration was reduced to a range of 84-133 mg/100 ml. (mean ± S.E. of mean, 94 ± 3) as compared to a range of 125-215 mg/100 ml. (mean ± S.E. of mean, 162 ± 8) in animals with normal gastric secretion.3. In fourteen of nineteen structures examined the rate of glucose utilization remained constant over the range of plasma glucose concentrations of 84-215 mg/100 ml. These structures included the ventromedial nucleus of the hypothalamus, the mamillary nuclei, the medial geniculate nuclei, globus pallidus, zona incerta, nucleus ambiguus, supraoptic nucleus, paraventricular nucleus, medial nucleus of the solitary tract, dorsal tegmental nucleus, red nucleus, inferior olivary nucleus, hippocampus and amygdaloid complex.4. A significant inverse correlation between plasma glucose concentration and the rate of glucose consumption was found in the lateral nucleus of the solitary tract, dorsal nucleus of the vagus, perifornical area where fibres of the medial forebrain bundle course, the superior olivary nucleus and the interstitial nucleus of the stria terminalis.5. Except for the superior olivary nucleus and the interstitial nucleus of the stria terminalis, all the structures affected by low plasma glucose concentration have previously been shown to participate in the gastrosecretory response to blockade of glucose utilization by pharmacological doses of 2-deoxy-D-glucose, indicating that these same nuclei are also activated by hypoglycaemia.
机译:1.通过2-脱氧-D-[ 14 ,在20只尿烷麻醉的大鼠中,研究了参与胰岛素低血糖的胃肠分泌作用的中枢神经结构,该大鼠先前患有慢性胃瘘。 C]葡萄糖放射自显影技术2。动物体内的胃液分泌增加,其中血浆葡萄糖浓度降低到84-133 mg / 100 ml。 (平均值的±标准误差的平均值,±94±3)与125-215 mg / 100 ml的范围相比。胃分泌物正常的动物的(平均值±标准误差的平均值,162±8)3。在十九个结构中的十四个中,在血浆葡萄糖浓度为84-215 mg / 100 ml的范围内,葡萄糖利用的速率保持恒定。这些结构包括下丘脑腹膜前核,乳突核,内侧膝状核,苍白苍白球,带状带状核,歧核,视上核,室旁核,巩膜内侧核,单核小管,红膜内核,背核核,海马和杏仁核复合体4。在孤立道的外侧核,迷走神经的背核,前脑内侧束走行的前围区,上橄榄核和间质核之间,血浆葡萄糖浓度与葡萄糖消耗速率之间存在显着的负相关关系。终末纹5。除上皮的纹状体核和终末期的间质核外,所有先前受低血浆葡萄糖浓度影响的结构均已被证明可通过药理剂量的2-脱氧-D-葡萄糖参与胃泌素对葡萄糖利用的阻断反应。 ,表明这些相同的细胞核也被低血糖激活。

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