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Handbook of Vitamin C Research

Handbook of Vitamin C Research

Handbook of Vitamin C Research

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Molecular Bases <strong>of</strong> the Cellular Handling <strong>of</strong> <strong>Vitamin</strong> C 235[112] Spielholz C, Golde DW, Houghton AN, Nualart F & Vera JC. (1997). Increasedfacilitated transport <strong>of</strong> dehydroascorbic acid without changes in sodium-dependentascorbate transport in human melanoma cells. Cancer Res 57, 2529-2537.[113] Steiling H, Longet K, Moodycliffe A, Mansourian R, Bertschy E, Smola H, Mauch C &Williamson G. (2007). Sodium-dependent vitamin C transporter is<strong>of</strong>orms in skin:Distribution, kinetics, and effect <strong>of</strong> UVB-induced oxidative stress. Free Radic BiolMed 43, 752-762.[114] Stratakis CA, Taymans SE, Daruwala R, Song J & Levine M. (2000). Mapping <strong>of</strong> thehuman genes (SLC23A2 and SLC23A1) coding for vitamin C transporters 1 and 2(SVCT1 and SVCT2) to 5q23 and 20p12, respectively. J Med Genet 37, E20.[115] Subramanian VS, Marchant JS, Reidling JC & Said HM. (2008). N-Glycosylation isrequired for Na+-dependent vitamin C transporter functionality. Biochem Biophys ResCommun 374, 123-127.[116] Taylor A, Jacques PF, Nadler D, Morrow F, Sulsky SI & Shepard D. (1991).Relationship in humans between ascorbic acid consumption and levels <strong>of</strong> total andreduced ascorbic acid in lens, aqueous humor, and plasma. Curr Eye Res 10, 751-759.[117] Trout DL. (1991). <strong>Vitamin</strong> C and cardiovascular risk factors. Am J Clin Nutr 53, 322S-325S.[118] Tsukaguchi H, Tokui T, Mackenzie B, Berger UV, Chen XZ, Wang Y, Brubaker RF &Hediger MA. (1999). A family <strong>of</strong> mammalian Na+-dependent L-ascorbic acidtransporters. Nature 399, 70-75.[119] Vaquero J, Marin JJ, Hierro C, Monte MJ, Jiménez F, González San-Martin F,Blázquez AG & Macias RR. (2009). Cellular heterogeneity in the expression <strong>of</strong> vitaminc transporters (SVCT1 and SVCT2) in normal and pathological liver parenchyma. JHepatology 50: 1: S52.[120] Varma SD. (1987). Ascorbic acid and the eye with special reference to the lens. Ann NY Acad Sci 498, 280-306.[121] Vera JC, Rivas CI, Zhang RH & Golde DW. (1998). Colony-stimulating factors signalfor increased transport <strong>of</strong> vitamin C in human host defense cells. Blood 91, 2536-2546.[122] Wang H, Dutta B, Huang W, Devoe LD, Leibach FH, Ganapathy V & Prasad PD.(1999). Human Na(+)-dependent vitamin C transporter 1 (hSVCT1): primary structure,functional characteristics and evidence for a non-functional splice variant. BiochimBiophys Acta 1461, 1-9.[123] Wang Y, Mackenzie B, Tsukaguchi H, Weremowicz S, Morton CC & Hediger MA.(2000). Human vitamin C (L-ascorbic acid) transporter SVCT1. Biochem Biophys ResCommun 267, 488-494.[124] Weber C, Erl W, Weber K & Weber PC. (1996). Increased adhesiveness <strong>of</strong> isolatedmonocytes to endothelium is prevented by vitamin C intake in smokers. Circulation 93,1488-1492.[125] Whitaker MJ. (1985). Reversing heart disease. Warner Books, New York.[126] Will JC & Byers T. (1996). Does diabetes mellitus increase the requirement for vitaminC? Nutr Rev 54, 193-202.[127] Wilson JX. (2005). Regulation <strong>of</strong> vitamin C transport. Annu Rev Nutr 25, 105-125.

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