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脑脊液各腔室间³H-菊粉的分布动态

Dynamics of distribution of 3H-inulin between the cerebrospinal fluid compartments.

作者信息

Vladić Anton, Klarica Marijan, Bulat Marin

机构信息

Department of Pharmacology and Croatian Institute for Brain Research, University of Zagreb School of Medicine, Salata 11, 10 000 Zagreb, Croatia.

出版信息

Brain Res. 2009 Jan 12;1248:127-35. doi: 10.1016/j.brainres.2008.10.044. Epub 2008 Oct 31.

Abstract

Since the distribution of substances between various cerebrospinal fluid (CSF) compartments is poorly understood, we studied (3)H-inulin distribution, over time, after its injection into cisterna magna (CM) or lateral ventricle (LV) or cisterna corporis callosi (CCC) in dogs. After the injection into CM (3)H-inulin was well distributed to cisterna basalis (CB), lumbar (LSS) and cortical (CSS) subarachnoid spaces and less distributed to LV. When injected in LV (3)H-inulin was well distributed to all CSF compartments. However, after injection into CCC (3)H-inulin was mostly localized in CCC and adjacent CSS, while its concentrations were much lower in CM and CB and very low in LSS and LV. Concentrations of (3)H-inulin in venous plasma of superior sagittal sinus and arterial plasma were very low and did not differ significantly, while its concentration in urine was very high. In (3)H-inulin distribution it seems that two simultaneous processes are relevant: a) the pulsation of CSF with to-and-fro displacement of CSF and its mixing, carrying (3)H-inulin in all directions, and b) the passage of (3)H-inulin from CSF into nervous parenchyma and its rapid distribution to a huge surface area of capillaries by vessels pulsations. (3)H-inulin then slowly diffuses across capillary walls into the bloodstream to be eliminated in the urine.

摘要

由于各种脑脊液(CSF)腔室之间物质的分布情况尚未得到充分了解,我们研究了狗在向其小脑延髓池(CM)、侧脑室(LV)或胼胝体池(CCC)注射³H-菊粉后,³H-菊粉随时间的分布情况。向CM注射³H-菊粉后,其能很好地分布到基底池(CB)、腰蛛网膜下腔(LSS)和皮质蛛网膜下腔(CSS),而在LV中的分布较少。当向LV注射时,³H-菊粉能很好地分布到所有CSF腔室。然而,向CCC注射³H-菊粉后,其大多局限于CCC和相邻的CSS,而在CM和CB中的浓度要低得多,在LSS和LV中的浓度则非常低。上矢状窦静脉血浆和动脉血浆中³H-菊粉的浓度非常低,且无显著差异,而其在尿液中的浓度非常高。在³H-菊粉的分布过程中,似乎有两个同时发生的过程起作用:a)CSF的脉动,伴随着CSF的来回位移及其混合,将³H-菊粉带向各个方向;b)³H-菊粉从CSF进入神经实质,并通过血管脉动迅速分布到巨大的毛细血管表面积。然后,³H-菊粉缓慢地穿过毛细血管壁进入血液,在尿液中被清除。

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