首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Perfusate oxygen and carbon dioxide concentration influence basal microdialysate levels of striatal glucose and lactate in conscious rats.
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Perfusate oxygen and carbon dioxide concentration influence basal microdialysate levels of striatal glucose and lactate in conscious rats.

机译:灌流液中氧气和二氧化碳的浓度会影响清醒大鼠的纹状体葡萄糖和乳酸盐的基础微透析液水平。

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摘要

O(2) concentration ([O(2)]) in air equilibrated solutions at room temperature is three fold higher than that in brain extracellular fluid (ECF), and CO(2) concentration ([CO(2)]) is 100 times lower. Using microdialysis the ECF is routinely dialyzed against glucose free isotonic perfusates containing 200 microM O(2) and 10 microM CO(2). In conscious rats, 2 days after probe implantation, decreasing perfusate [O(2)] from 200 to 68 microM (physiologic level) for 60 min, while maintaining a low [CO(2)] (10 microM), increased striatal dialysate glucose and lactate by 12% and 33%, respectively. The same protocol on the third day essentially had no effect on monoamine metabolites. Decreasing [O(2)] concurrent with increasing [CO(2)] to 1.3 mM (physiologic level) for 60 min increased glucose and lactate by 17% and 37%, respectively. This study demonstrates for dialysis studies of glucose and lactate, perfusates that mimic physiologic ECF [O(2)] and [CO(2)] are more appropriate.
机译:室温下空气平衡溶液中的O(2)浓度([O(2)])比脑细胞外液(ECF)中的浓度高三倍,CO(2)浓度([CO(2)])为100低倍。使用微透析ECF常规透析包含200 microM O(2)和10 microM CO(2)的无葡萄糖等渗灌注液。在有意识的大鼠中,探针植入后2天,灌注液[O(2)]从200降低至68 microM(生理水平),持续60分钟,同时保持低[CO(2)](10 microM),增加了纹状体透析液葡萄糖和乳酸分别增加了12%和33%。第三天相同的方案对单胺代谢物基本上没有影响。降低[O(2)]并同时将[CO(2)]增加到1.3 mM(生理水平)60分钟,葡萄糖和乳酸盐分别增加了17%和37%。这项研究表明,对于葡萄糖和乳酸的透析研究,模拟生理ECF [O(2)]和[CO(2)]的灌洗液更为合适。

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