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The influence of diabetes on glutamate metabolism in retinas.

机译:糖尿病对视网膜中谷氨酸代谢的影响。

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Excised retinas from euglycemic and diabetic Sprague-Dawley rats were studied to evaluate differences in glutamate metabolism related to diabetes. Reports suggest, neuronal cell death possibly caused by glutamate excitotoxicity, is an early consequence of diabetes. To monitor the influence of diabetes on glutamate metabolism, we measured glutamatergic neurotransmission, anaplerotic glutamate synthesis from (14) CO(2) and pyruvate as well as rates of glutamate cataplerosis ([U-(14) C]glutamate to (14) CO(2) and (14) C-pyruvate). The data suggest the presence of a glutamate buffering anaplerotic/cataplerotic metabolic cycle in controls which is uncoupled by diabetes. For cycle operation, anaplerosis is initiated by a small pyruvate pool which is also the product of cataplerosis. In the cataplerotic pathway, glutamate conversion to alpha-ketoglutarate and then to CO(2) and pyruvate is reduced by 90% in diabetic retinal Muller cells because glutamate transamination by branched chain aminotransferase is competitively inhibited by branched chain amino acids (BCAAs). BCAAs, but not the ketoacids, were almost twice as high in diabetic compared to euglycemic rat retinas. The data suggest the hypothesis that glutamate levels in retinal Muller cells from diabetic rats are elevated because of the presence of excess BCAAs, and that elevated glutamate in Muller cells causes glutamate excitotoxicity.
机译:研究了正常血糖和糖尿病Sprague-Dawley大鼠的切除视网膜,以评估与糖尿病相关的谷氨酸代谢的差异。报告表明,谷氨酸兴奋性中毒可能导致神经元细胞死亡,是糖尿病的早期后果。为了监测糖尿病对谷氨酸代谢的影响,我们测量了谷氨酸能神经传递,从(14)CO(2)和丙酮酸合成过剩的谷氨酸,以及谷氨酸过剩率([U-(14)C]谷氨酸到(14)CO的比率) (2)和(14)C-丙酮酸盐)。数据表明,在与糖尿病无关的对照中,存在谷氨酸缓冲的动脉粥样硬化/硬化性代谢循环。对于周期操作,动脉粥样硬化是由小的丙酮酸盐池引发的,丙酮酸池也是钙化病的产物。在糖尿病的视网膜穆勒细胞中,谷胱甘肽转化为α-酮戊二酸然后转化为CO(2)和丙酮酸的谷氨酸减少了90%,因为分支链氨基转移酶对谷氨酸的转氨作用受到分支链氨基酸(BCAAs)的竞争抑制。与正常血糖的大鼠视网膜相比,糖尿病中的BCAA(而非酮酸)几乎高出两倍。数据提出了以下假设:由于存在过量的BCAA,糖尿病大鼠的视网膜Muller细胞中的谷氨酸水平升高,而Muller细胞中的谷氨酸水平升高会引起谷氨酸兴奋性毒性。

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