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在脑毛细血管丛水平是否存在针对单胺分解代谢产物的丙磺舒敏感转运系统?

Is there a probenecid sensitive transport system for monoamine catabolites at the level of the brain capillary plexus?

作者信息

Yuwiler A, Bennett B L, Geller E

出版信息

Neurochem Res. 1982 Oct;7(10):1277-85. doi: 10.1007/BF00965898.

Abstract

Probenecid inhibits the transport of the small monocarboxylic acids lactate and propionate from blood to brain but does not affect the transport of 5HIAA or HVA. Neither lactate, 5HIAA, HVA, nor probenecid itself inhibits probenecid uptake into brain from blood and neither lactate nor 5HIAA itself inhibits 5HIAA uptake. These results indicate first that probenecid inhibits the lactate carrier but is itself not transported by that carrier and second that 5HIAA and probenecid are independently transported from blood to brain by a low affinity system, probably by diffusion. Preloading animals with both tryptophan and probenecid increased the apparent transport of lactate, probenecid and 5HIAA but not the transport of glucose. This indicates that the transport of 5HIAA, lactate and probenecid from brain to blood involves a common, saturable carrier. These two sets of data indicate that either the brain capillary transport system is asymmetric or that probenecid-inhibited transport of monoamine catabolites from brain occurs at sites other than the capillary transport system of the blood-brain barrier.

摘要

丙磺舒抑制血液中乳酸和丙酸等小分子单羧酸向脑内的转运,但不影响5-羟吲哚乙酸(5HIAA)或高香草酸(HVA)的转运。乳酸、5HIAA、HVA以及丙磺舒本身均不抑制丙磺舒从血液向脑内的摄取,乳酸和5HIAA本身也不抑制5HIAA的摄取。这些结果首先表明丙磺舒抑制乳酸载体,但自身不被该载体转运;其次表明5HIAA和丙磺舒通过低亲和力系统(可能是通过扩散)从血液独立转运至脑内。用色氨酸和丙磺舒对动物进行预负荷,可增加乳酸、丙磺舒和5HIAA的表观转运,但不增加葡萄糖的转运。这表明5HIAA、乳酸和丙磺舒从脑向血液的转运涉及一种共同的、可饱和的载体。这两组数据表明,要么脑毛细血管转运系统是不对称的,要么丙磺舒抑制的单胺分解代谢产物从脑内的转运发生在血脑屏障毛细血管转运系统以外的部位。

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