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鸡胚交感神经节以及来自这些神经节的神经元和其他细胞原代培养物中的[14C]葡萄糖代谢

[14C]Glucose metabolism in sympathetic ganglia of chicken embryos and in primary cultures of neurons and of other cells from these ganglia.

作者信息

Larrabee M G

出版信息

J Neurochem. 1982 Jan;38(1):215-32. doi: 10.1111/j.1471-4159.1982.tb10874.x.

Abstract

Metabolism of [1-14C]glucose and [6-14C]glucose was measured in sympathetic ganglia excised from chicken embryos 12-16 days old and in primary cultures of neurons or nonneurons prepared from these ganglia. Some metabolic rates tended to change with the tissue/medium ratio, so this variable had to be controlled. Less C-6 than C-1 od glucose was put out in CO2 by all three types of preparations, indicating operation of the hexosemonophosphate shunt. The C-6/C-1 ratio was greater for the neuronal cultures and for intact ganglia than for the nonneuronal cultures. The C-6/C-1 ratio for the neurons increased with the amount of tissue added to a given volume of incubation medium, in agreement with previous experiments on embryonic dorsal root ganglia (Larrabee, 1978). Per unit of protein, the output of C-1 of glucose in CO2 was higher in both the neuronal and the nonneural cultures than in intact ganglia, whereas that of C-6 was higher in the neuronal cultures and lower in the nonneuronal ones than in the ganglia. The rates of release in lactate of C-1 and C-6 of glucose were 3-5 times higher from both types of cultures than from intact ganglia. The average rates of incorporation of C-1 and C-6 of glucose into tissue constituents were lower in the cultures than in intact ganglia, significantly so for incorporation of C-6 in the nonneuronal cultures.

摘要

在取自12 - 16日龄鸡胚的交感神经节以及由这些神经节制备的神经元或非神经元原代培养物中,测定了[1 - 14C]葡萄糖和[6 - 14C]葡萄糖的代谢情况。一些代谢率倾向于随组织/培养基比例而变化,所以这个变量必须得到控制。所有三种类型的制剂释放到二氧化碳中的葡萄糖C - 6比C - 1少,这表明己糖磷酸支路的运作。神经元培养物和完整神经节的C - 6/C - 1比值高于非神经元培养物。神经元的C - 6/C - 1比值随着添加到给定体积孵育培养基中的组织量增加而升高,这与先前关于胚胎背根神经节的实验结果一致(拉腊比,1978年)。每单位蛋白质,神经元和非神经培养物中葡萄糖C - 1释放到二氧化碳中的量高于完整神经节,而C - 6的释放量在神经元培养物中高于神经节,在非神经元培养物中低于神经节。两种培养物中葡萄糖C - 1和C - 6释放到乳酸中的速率比完整神经节高3 - 5倍。培养物中葡萄糖C - 1和C - 6掺入组织成分的平均速率低于完整神经节,对于非神经元培养物中C - 6的掺入情况,差异显著。

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