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大鼠大脑、坐骨神经和脑脊液中24Na动力学的房室分析。

A compartmental analysis of 24 Na kinetics in rat cerebrum, sciatic nerve and cerebrospinal fluid.

作者信息

Levin V, Patlak C S

出版信息

J Physiol. 1972 Aug;224(3):559-81. doi: 10.1113/jphysiol.1972.sp009913.

Abstract
  1. The kinetics of (24)Na exchange in rat cerebrospinal fluid, brain and sciatic nerve were studied during steady-state plasma isotope conditions. The entrance of (24)Na into brain and sciatic nerve was found to fit a three compartmental model. Using newly derived equations for compartmental analysis, the first compartment (24)Na space of brain was found to be about 22% and the second compartment space about 6%; the corresponding sciatic nerve spaces were 26 and 11%, respectively. In the discussion, arguments are presented that suggest that the first compartment is the extracellular space (ECS) and the second compartment is the intracellular space. The t((1/2)) for compartmental equilibration between plasma and brain ECS was 2 hr and from ECS to intracellular space 14 hr; in nerve the respective t((1/2))'s were (2/3) hr and 10 hr.2. A third compartment of 18% was found in sciatic nerve which was interpreted to be anatomically confined to the epi- and perineurium; in brain the corresponding space was 2% and was felt to be anatomically and kinetically an inactive closed compartment in parallel with the blood.3. There were two t((1/2))'s for plasma-c.s.f. (24)Na equilibration of less than 10 min and 2 hr.4. Profiles of brain, from cortex to ventricle, at 6 min, demonstrated a gradient of decreasing (24)Na radioactivity from ventricle to cortex.
摘要
  1. 在稳态血浆同位素条件下,研究了大鼠脑脊液、脑和坐骨神经中(24)Na交换的动力学。发现(24)Na进入脑和坐骨神经符合三室模型。使用新推导的房室分析方程,发现脑的第一房室(24)Na空间约为22%,第二房室空间约为6%;坐骨神经的相应空间分别为26%和11%。在讨论中,提出的论据表明第一房室是细胞外空间(ECS),第二房室是细胞内空间。血浆与脑ECS之间房室平衡的t(1/2)为2小时,从ECS到细胞内空间为14小时;在神经中,相应的t(1/2)分别为(2/3)小时和10小时。

  2. 在坐骨神经中发现了18%的第三房室,其在解剖学上被解释为局限于神经外膜和神经束膜;在脑中,相应的空间为2%,被认为在解剖学和动力学上是一个与血液平行的无活性封闭房室。

  3. 血浆-脑脊液(24)Na平衡有两个t(1/2),分别小于10分钟和2小时。

  4. 在6分钟时,从皮质到脑室的脑剖面图显示,从脑室到皮质(24)Na放射性呈递减梯度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4206/1331510/6603ddab1fd5/jphysiol01339-0056-a.jpg

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