Spector R
Am J Physiol. 1976 Apr;230(4):1101-7. doi: 10.1152/ajplegacy.1976.230.4.1101.
Total thiamine (free thiamine and thiamine phosphates) transport into the cerebrospinal fluid (CSF), brain, and choroid plexus and out of the CSF was measured in rabbits. In vivo, total thiamine transport into CSF, choroid plexus, and brain was saturable. At the normal plasma total thiamine concentration, less than 5% of total thiamine entry into CSF, choroid plexus, and brain was by simple diffusion. The relative turnovers of total thiamine in choroid plexus, whole brain, and CSF were 5, 2, and 14% per h, respectively, when measured by the penetration of 35S-labeled thiamine injected into blood. From the CSF, clearance of [35S]thiamine relative to mannitol was not saturable after the intraventricular injection of various concentrations of thiamine. However, a portion of the [35S]thiamine cleared from the CSF entered brain by a saturable mechanism. In vitro, choroid plexuses, isolated from rabbits and incubated in artificial CSF, accumulated [35S]thiamine against a concentration gradient by an active saturable process that did not depend on pyrophosphorylation of the [35S]thiamine. The [35S]thiamine accumulated within the choroid plexus in vitro was readily released. These results were interpreted as showing that the entry of total thiamine into the brain and CSF from blood is regulated by a saturable transport system, and that the locus of this system may be, in part, in the choroid plexus.
在兔子身上测量了总硫胺素(游离硫胺素和硫胺素磷酸盐)向脑脊液(CSF)、脑和脉络丛的转运以及从脑脊液中的排出。在体内,总硫胺素向脑脊液、脉络丛和脑的转运是可饱和的。在正常血浆总硫胺素浓度下,进入脑脊液、脉络丛和脑的总硫胺素中,通过简单扩散进入的不到5%。当通过向血液中注射35S标记的硫胺素的渗透来测量时,脉络丛、全脑和脑脊液中总硫胺素的相对周转率分别为每小时5%、2%和14%。在脑室内注射不同浓度的硫胺素后,相对于甘露醇,[35S]硫胺素从脑脊液中的清除是不饱和的。然而,从脑脊液中清除的一部分[35S]硫胺素通过一种可饱和机制进入脑。在体外,从兔子身上分离并在人工脑脊液中孵育的脉络丛通过一个不依赖于[35S]硫胺素焦磷酸化的主动可饱和过程,逆浓度梯度积累[35S]硫胺素。体外在脉络丛中积累的[35S]硫胺素很容易释放。这些结果被解释为表明总硫胺素从血液进入脑和脑脊液是由一个可饱和转运系统调节的,并且这个系统的位点可能部分位于脉络丛。