Effect of thiamine on 3H-MPP+ uptake by Caco-2 cells

被引:9
作者
Calhau, C [1 ]
Martel, F
Hipólito-Reis, C
Azevedo, I
机构
[1] Univ Porto, Dept Biochem, P-4200319 Porto, Portugal
[2] Univ Porto, Fac Med, Inst Pharmacol & Therapeut, FCT, P-4200319 Porto, Portugal
[3] Univ Porto, Fac Nutr & Food Sci, P-4200319 Porto, Portugal
关键词
Caco-2; cells; 1-methyl-4-phenylpyridinium (MPP+); uptake; ecto-alkaline phosphatase; thiamine;
D O I
10.1016/S1043-6618(03)00176-2
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Recent studies on the intestinal uptake of the organic cation 1-methyl-4-phenylpyridinium (MPP+) showed that transport of this compound occurs through human extraneuronal monoamine transporter (hEMT). Moreover, it was recently described that alkaline phosphatase (ALP), an ecto-phosphatase anchored to the plasma membrane and able to dephosphorylate extracellular substrates or cell-surface proteins, is directly or indirectly involved in the modulation of MPP+ uptake by Caco-2 cells. The present study investigated a putative modulation of MPP+ intestinal apical uptake and ecto-ALP activity by thiamine (T+) and thiamine pyrophosphate (TPP, a T+ dietary precursor). For this purpose, we used Caco-2 cells, an enterocyte-like cell line derived from a human colonic adenocarcinoma, as an intestinal model. Ecto-ALP activity and N-[methyl-H-3]-4-phenylpyridinium acetate (H-3-MPP+) uptake were evaluated in intact Caco-2 cells. T+ and TPP were able to increase ecto-ALP activity, with an equal potency, and to decrease H-3-MPP+ apical uptake, with a similar potency. The effects of both compounds on ecto-ALP activity and H-3-MPP+ uptake were concentration-dependent. The results suggest that the effect of T+ and TPP on ecto-ALP activity may lead to inhibition of the intestinal absorption of other organic cations present in the diet. Another important conclusion is that the intestinal absorption of T+ may occur through hEMT, in Caco-2 cells. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:579 / 584
页数:6
相关论文
共 36 条
[11]   Identification and characterization of the human and mouse SLC19A3 gene: A novel member of the reduced folate family of micronutrient transporter genes [J].
Eudy, JD ;
Spiegelstein, O ;
Barber, RC ;
Wlodarczyk, BJ ;
Talbot, J ;
Finnell, RH .
MOLECULAR GENETICS AND METABOLISM, 2000, 71 (04) :581-590
[12]   ACTION OF INORGANIC-PHOSPHATE ON THIAMIN TRANSPORT BY RAT EVERTED JEJUNAL SACS [J].
FERRARI, G ;
RINDI, G ;
DANDREA, G .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1978, 376 (01) :47-53
[13]   The gene mutated in thiamine-responsive anaemia with diabetes and deafness (TRMA) encodes a functional thiamine transporter [J].
Fleming, JC ;
Tartaglini, E ;
Steinkamp, MP ;
Schorderet, DF ;
Cohen, N ;
Neufeld, EJ .
NATURE GENETICS, 1999, 22 (03) :305-308
[14]  
Friedgen B, 1996, N-S ARCH PHARMACOL, V354, P275
[15]   Molecular identification of the corticosterone-sensitive extraneuronal catecholamine transporter [J].
Grundemann, D ;
Schechinger, B ;
Rappold, GA ;
Schomig, E .
NATURE NEUROSCIENCE, 1998, 1 (05) :349-351
[16]   Selective substrates for non-neuronal monoamine transporters [J].
Gründemann, D ;
Liebich, G ;
Kiefer, N ;
Köster, S ;
Schömig, E .
MOLECULAR PHARMACOLOGY, 1999, 56 (01) :1-10
[17]  
HIDALGO IJ, 1989, GASTROENTEROLOGY, V96, P736
[18]  
HOHAGE H, 1994, J PHARMACOL EXP THER, V268, P897
[19]  
Hohage I, 1998, N-S ARCH PHARMACOL, V358, pR741
[20]   Characterization of the transport of the organic cation [3H]MPP+ in human intestinal epithelial (Caco-2) cells [J].
Martel, F ;
Calhau, C ;
Azevedo, I .
NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 2000, 361 (05) :505-513