https://ogma.newcastle.edu.au/vital/access/ /manager/Index en-au 5 Gene-nutrient interaction between folate and dihydrofolate reductase in risk for adenomatous polyp occurrence: a preliminary report https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:23349 Sat 24 Mar 2018 07:13:33 AEDT ]]> Elevated folic acid results in contrasting cancer cell line growth with implications for mandatory folic acid fortification https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:24987 in vitro model. Methods: Caco-2 (colorectal cancer) and MCF7 (breast cancer) cell lines were cultured at 6 different PteGlu concentrations (0, 0.1, 1, 50, 250, and 500µg/ml) for 6 days. Cell growth was determined using thiazolyl blue tetrazolium bromide assay. The genotype of dihydrofolate reductase 19bp deletion/insertion (DHFR 19-del) was also scored in cell lines using a restriction fragment length polymorphism technique to examine whether genetic variations may factor in cell proliferation. Results: PteGlu exhibited differential growth promoting properties between cell lines. Caco-2 cells did not show a significant growth difference at low concentrations compared to control, however, at higher concentrations, the growth showed a contrasting trend in the early experimental period, while MCF7 showed enhanced cell growth at all concentrations. The DHFR 19-del genotype differed in the two cell lines. Conclusions: Altered response to PteGlu by Caco-2 and MCF7 may reflect a tissue specific disease aetiology or genotype specific differential enzyme activity, for example by DHFR, to critical levels of PteGlu. As folic acid fortification is a blanket intervention, and DHFR and other enzyme activities vary between individuals, PteGlu intake may have an as yet undefined effect on health. These findings may be relevant when considering mandatory folic acid fortification for disease prevention.]]> Fri 03 Dec 2021 10:34:46 AEDT ]]>