Literature DB >> 8304455

Mechanism of riboflavine uptake by Caco-2 human intestinal epithelial cells.

H M Said1, T Y Ma.   

Abstract

The cellular and molecular regulation of intestinal absorption of the water-soluble vitamin riboflavine (RF) is poorly understood. The availability of a suitable in vitro cultured system that possesses the transport characteristics of the native intestinal absorptive cells would provide a powerful means to address this issue. In this study, we examined RF uptake by the human-derived cultured Caco-2 intestinal epithelial cells. RF uptake was Na+ and pH independent and occurred without metabolic alterations of the transported RF. Initial rate of RF uptake was temperature dependent and saturable as a function of concentration at 37 degrees C but not at 4 degrees C (apparent Michaelis constant = 0.30 +/- 0.03 microM, maximal velocity = 209.90 +/- 24.40 pmol.mg protein-1.3 min-1). Unlabeled RF, lumiflavine, 8-amino-riboflavine, isoriboflavine, and lumichrome in the incubation solution caused significant inhibition of RF uptake. RF uptake was also energy dependent and was sensitive to the inhibitory effect of sulfhydryl group reagents. The membrane transport inhibitor amiloride, but not 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid, 4-acetamide-4'-isothiocyanostilbene-2,2'-disulfonic acid, furosemide, or probenecid, inhibited RF uptake in a competitive (inhibitory constant = 0.48 mM) and reversible manner. Growing Caco-2 monolayers in a RF-deficient and oversupplemented media caused significant up- and downregulation of RF uptake, respectively. These results demonstrate the existence of a carrier-mediated system for RF uptake by Caco-2 cells and provide new information regarding amiloride sensitivity, involvement of sulfhydryl groups, and up- and downregulation by the substrate level and clarify the controversy regarding the role of Na+ in the uptake process.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1994        PMID: 8304455     DOI: 10.1152/ajpgi.1994.266.1.G15

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  22 in total

1.  Role of cysteine residues in cell surface expression of the human riboflavin transporter-2 (hRFT2) in intestinal epithelial cells.

Authors:  Veedamali S Subramanian; Laramie Rapp; Jonathan S Marchant; Hamid M Said
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2011-04-21       Impact factor: 4.052

2.  Structure/functional aspects of the human riboflavin transporter-3 (SLC52A3): role of the predicted glycosylation and substrate-interacting sites.

Authors:  Veedamali S Subramanian; Subrata Sabui; Trevor Teafatiller; Jennifer A Bohl; Hamid M Said
Journal:  Am J Physiol Cell Physiol       Date:  2017-06-21       Impact factor: 4.249

3.  Effect of clinical mutations on functionality of the human riboflavin transporter-2 (hRFT-2).

Authors:  Svetlana M Nabokina; Veedamali S Subramanian; Hamid M Said
Journal:  Mol Genet Metab       Date:  2012-01-05       Impact factor: 4.797

Review 4.  Blood-brain barrier: structural components and function under physiologic and pathologic conditions.

Authors:  Yuri Persidsky; Servio H Ramirez; James Haorah; Georgette D Kanmogne
Journal:  J Neuroimmune Pharmacol       Date:  2006-07-06       Impact factor: 4.147

Review 5.  Riboflavin transport and metabolism in humans.

Authors:  Maria Barile; Teresa Anna Giancaspero; Piero Leone; Michele Galluccio; Cesare Indiveri
Journal:  J Inherit Metab Dis       Date:  2016-06-06       Impact factor: 4.982

6.  The effect of probenecid on the pharmacokinetics of zalcitabine in HIV-positive patients.

Authors:  J W Massarella; L A Nazareno; S Passe; B Min
Journal:  Pharm Res       Date:  1996-03       Impact factor: 4.200

7.  Chronic alcohol feeding inhibits physiological and molecular parameters of intestinal and renal riboflavin transport.

Authors:  Veedamali S Subramanian; Sandeep B Subramanya; Abhisek Ghosal; Hamid M Said
Journal:  Am J Physiol Cell Physiol       Date:  2013-06-26       Impact factor: 4.249

8.  Depletion of host cell riboflavin reduces Wolbachia levels in cultured mosquito cells.

Authors:  Ann M Fallon; Gerald D Baldridge; Elissa M Carroll; Cassandra M Kurtz
Journal:  In Vitro Cell Dev Biol Anim       Date:  2014-05-02       Impact factor: 2.416

9.  Sodium Butyrate Enhances Intestinal Riboflavin Uptake via Induction of Expression of Riboflavin Transporter-3 (RFVT3).

Authors:  Veedamali S Subramanian; Subrata Sabui; Christopher W Heskett; Hamid M Said
Journal:  Dig Dis Sci       Date:  2018-10-01       Impact factor: 3.199

10.  Riboflavin depletion of intestinal cells in vitro leads to impaired energy generation and enhanced oxidative stress.

Authors:  Eun-Sook Lee; Bernard M Corfe; Hilary J Powers
Journal:  Eur J Nutr       Date:  2012-11-06       Impact factor: 5.614

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