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单羧酸在血脑屏障处的转运:原代培养牛脑微血管内皮细胞单层的研究

Transport of monocarboxylic acids at the blood-brain barrier: studies with monolayers of primary cultured bovine brain capillary endothelial cells.

作者信息

Terasaki T, Takakuwa S, Moritani S, Tsuji A

机构信息

Department of Pharmaceutics, Faculty of Pharmaceutical Sciences, Kanazawa University, Japan.

出版信息

J Pharmacol Exp Ther. 1991 Sep;258(3):932-7.

PMID:1890627
Abstract

The kinetics and mechanism of the transport of monocarboxylic acids (MCAs) were studied by using primary cultured bovine brain capillary endothelial cells. Concentration-dependent uptake of acetic acid was observed, and the kinetic parameters were estimated as follows: the Michaelis constant, Kt, was 3.41 +/- 1.87 mM, the maximum uptake rate, Jmax, was 144.7 +/- 55.7 nmol/mg of protein/min and the nonsaturable first-order rate constant, Kd, was 6.66 +/- 1.98 microliters/mg of protein/min. At medium pH below 7.0, the uptake rate of [3H]acetic acid increased markedly with decreasing medium pH, whereas pH-independent uptake was observed in the presence of 10 mM acetic acid. An energy requirement for [3H]acetic acid uptake was also demonstrated, because metabolic inhibitors (2,4-dinitrophenol and rotenone) reduced significantly the uptake rate (P less than .05). Carbonylcyanide-p-trifluoro-methoxyphenylhydrazone, a protonophore, inhibited significantly the uptake of [3H]acetic acid at medium pH of 5.0 and 6.0, whereas 4,4'-diisothiocyanostilben-2,2'-disulfonic acid did not. Several MCAs inhibited significantly the uptake rate of [3H]acetic acid, whereas di- and tricarboxylic acids did not. The uptake of [3H]acetic acid was competitively inhibited by salicylic acid, with an inhibition constant, Ki, of 3.60 mM, suggesting a common transport system between acetic acid and salicylic acid. Moreover, at the medium pH of 7.4, salicylic acid and valproic acid inhibited significantly the uptake of [3H]acetic acid, demonstrating that the transport of MCA drugs could also be ascribed to the MCA transport system at the physiologic pH.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

采用原代培养的牛脑毛细血管内皮细胞研究了一元羧酸(MCA)的转运动力学和机制。观察到乙酸的浓度依赖性摄取,其动力学参数估计如下:米氏常数Kt为3.41±1.87 mM,最大摄取速率Jmax为144.7±55.7 nmol/mg蛋白质/分钟,非饱和一级速率常数Kd为6.66±1.98微升/mg蛋白质/分钟。在培养基pH低于7.0时,[3H]乙酸的摄取速率随培养基pH降低而显著增加,而在10 mM乙酸存在下观察到与pH无关的摄取。还证明了[3H]乙酸摄取需要能量,因为代谢抑制剂(2,4-二硝基苯酚和鱼藤酮)显著降低了摄取速率(P<0.05)。质子载体羰基氰化物-对-三氟甲氧基苯腙在培养基pH为5.0和6.0时显著抑制[3H]乙酸的摄取,而4,4'-二异硫氰酸根合芪-2,2'-二磺酸则无此作用。几种MCA显著抑制[3H]乙酸的摄取速率,而二元和三元羧酸则无此作用。水杨酸竞争性抑制[3H]乙酸的摄取,抑制常数Ki为3.60 mM,表明乙酸和水杨酸之间存在共同的转运系统。此外,在培养基pH为7.4时,水杨酸和丙戊酸显著抑制[3H]乙酸的摄取,表明在生理pH下,MCA药物的转运也可归因于MCA转运系统。(摘要截短至250字)

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