Pellis Linette, Dommels Yvonne, Venema Dini, Polanen Ab van, Lips Esther, Baykus Hakan, Kok Frans, Kampman Ellen, Keijer Jaap
RIKILT-Institute of Food Safety, PO Box 230, 6700 AE Wageningen, The Netherlands.
Br J Nutr. 2008 Apr;99(4):703-8. doi: 10.1017/S0007114507824147. Epub 2007 Sep 10.
Folate, a water-soluble B vitamin, is a cofactor in one-carbon metabolism and is essential for DNA synthesis, amino acid interconversion, methylation and, consequently, normal cell growth. In animals with existing pre-neoplastic and neoplastic lesions, folic acid supplementation increases the tumour burden. To identify processes that are affected by increased folic acid levels, we compared HT29 human colon cancer cells exposed to a chronic supplemental (100 ng/ml) level of folic acid to cells exposed to a normal (10 ng/ml) level of folic acid, in the presence of vitamin B12 and other micronutrients involved in the folate-methionine cycle. In addition to higher intracellular folate levels, HT29 cells at 100 ng folic acid/ml displayed faster growth and higher metabolic activity. cDNA microarray analysis indicated an effect on cell turnover and Fe metabolism. We fully confirmed these effects at the physiological level. At 100 ng/ml, cell assays showed higher proliferation and apoptosis, while gene expression analysis and a lower E-cadherin protein expression indicated decreased differentiation. These results are in agreement with the promoting effect of folic acid supplementation on established colorectal neoplasms. The lower expression of genes related to Fe metabolism at 100 ng folic acid/ml was confirmed by lower intracellular Fe levels in the cells exposed to folic acid at 100 ng/ml. This suggests an effect of folate on Fe metabolism.
叶酸是一种水溶性B族维生素,是一碳代谢中的一种辅助因子,对DNA合成、氨基酸相互转化、甲基化以及正常细胞生长至关重要。在已有癌前病变和肿瘤病变的动物中,补充叶酸会增加肿瘤负担。为了确定受叶酸水平升高影响的过程,我们将暴露于慢性补充(100 ng/ml)叶酸水平的HT29人结肠癌细胞与暴露于正常(10 ng/ml)叶酸水平的细胞进行了比较,同时存在维生素B12和参与叶酸-甲硫氨酸循环的其他微量营养素。除了细胞内叶酸水平较高外,100 ng叶酸/ml的HT29细胞显示出更快的生长速度和更高的代谢活性。cDNA微阵列分析表明对细胞更新和铁代谢有影响。我们在生理水平上充分证实了这些影响。在100 ng/ml时,细胞试验显示增殖和凋亡增加,而基因表达分析和较低的E-钙黏蛋白蛋白表达表明分化降低。这些结果与补充叶酸对已形成的结肠直肠肿瘤的促进作用一致。100 ng叶酸/ml时与铁代谢相关基因的较低表达通过暴露于100 ng/ml叶酸的细胞中较低的细胞内铁水平得到证实。这表明叶酸对铁代谢有影响。