McNay Ewan C, Sherwin Robert S
Department of Internal Medicine, Sections of Endocrinology and Neuroendocrinology, Yale School of Medicine, New Haven, CT 06520-8020, USA.
J Neurosci Methods. 2004 Jan 15;132(1):35-43. doi: 10.1016/j.jneumeth.2003.08.014.
Microdialysis (mD) is the predominant technique for measurements of brain chemistry, especially when such measurements are made in awake animals. Relatively little attention has been paid, however, to the potential effect on such measurements of variation in the perfusate solution used. Here, we report that small variations in the ionic composition of microdialysis perfusate produced four-fold differences (0.53-2.18 mM) in the results obtained when measuring brain extracellular fluid (ECF) glucose. These changes may be linked to concomitant alterations of local neural activity caused by the perfusate composition. In addition to perfusate composition, probe type also proved to have a significant impact on microdialysis measurements. Further, we report the first direct microdialysis measurements of brain ECF ionic composition, showing significant differences from that of the cerebro-spinal fluid (CSF). Modifying the ionic composition of microdialysis perfusate based on these measurements resulted in a measured hippocampal ECF glucose level of 1.26 +/- .04 mM. Increased understanding of the impact of differences in the perfusate solutions used by different laboratories may provide a basis for reconciliation of apparently disparate microdialysis results within the literature.
微透析(mD)是测量脑内化学成分的主要技术,尤其适用于对清醒动物进行此类测量。然而,对于所用灌注液变化对此类测量的潜在影响,人们关注相对较少。在此,我们报告,微透析灌注液离子组成的微小变化,在测量脑细胞外液(ECF)葡萄糖时,会使结果产生四倍差异(0.53 - 2.18 mM)。这些变化可能与灌注液成分引起的局部神经活动的相应改变有关。除了灌注液成分外,探针类型也被证明对微透析测量有显著影响。此外,我们首次直接测量了脑ECF的离子组成,结果显示其与脑脊液(CSF)有显著差异。基于这些测量结果修改微透析灌注液的离子组成后,测得海马ECF葡萄糖水平为1.26 +/- 0.04 mM。深入了解不同实验室所用灌注液差异的影响,可能为调和文献中明显不同的微透析结果提供依据。