Folic acid (FA), the most oxidized and stable form of folate, is commonly used as a dietary supplement and in culture media. FA must be reduced and methylated to become the metabolically active form found in blood and utilized by tissues, i.e. 5-methyltetrahydrofolate (5-MeTHF). 5-MeTHF is the methyl group donor required for the conversion of homocysteine to methionine catalyzed by vitamin B(12)-dependent methionine synthase. It is hypothesized that 5-MeTHF may be more effective than FA in reducing spontaneous DNA damage and improving cell proliferation because, unlike FA, it can donate a methyl group for methionine synthesis, which is required for cell division via polyamine production and for maintenance methylation of DNA after its conve...
Folic acid and natural folates are B group vitamins obtained exclusively from the diet. Biochemicall...
Food fortification with synthetic folic acid (FA), along with supplementation, results in a marked i...
Folate and methionine are critical for one-carbon metabolism, impacting DNA synthesis, repair, and m...
High folate status from high folic acid (FA) intakes may have unintended and serious deleterious eff...
We performed a comprehensive study on the genotoxic and cytotoxic effects of in vitro folic acid def...
Adequate levels of folates are essential for homeostasis of the organism, prevention of congenital m...
Methylenetetrahydrofolate reductase (MTHFR) is an enzyme which converts 5,10-methylene tetrahydrofol...
Inadequate folate status is detrimental to human development. Deficiency has been implicated in cong...
Folic acid plays a critical role in the prevention of chromosome breakage and hypomethylation of DNA...
Folate plays a role in the synthesis and repair of DNA and the generation of methyl groups. Folic ac...
Folate derivatives are required for nucleotide/DNA synthesis and DNA methylation. Methylenetetrahydr...
Due to emerging evidence linking high folic acid (FA) intake to certain adverse health effects, many...
Folate metabolism can be an effective target for cancer treatment. However, standard cell culture co...
Folic acid plays a key role in the maintenance of genomic stability, providing methyl groups for the...
Methylation is an essential biochemical mechanism that is central to the transmission of life, and c...
Folic acid and natural folates are B group vitamins obtained exclusively from the diet. Biochemicall...
Food fortification with synthetic folic acid (FA), along with supplementation, results in a marked i...
Folate and methionine are critical for one-carbon metabolism, impacting DNA synthesis, repair, and m...
High folate status from high folic acid (FA) intakes may have unintended and serious deleterious eff...
We performed a comprehensive study on the genotoxic and cytotoxic effects of in vitro folic acid def...
Adequate levels of folates are essential for homeostasis of the organism, prevention of congenital m...
Methylenetetrahydrofolate reductase (MTHFR) is an enzyme which converts 5,10-methylene tetrahydrofol...
Inadequate folate status is detrimental to human development. Deficiency has been implicated in cong...
Folic acid plays a critical role in the prevention of chromosome breakage and hypomethylation of DNA...
Folate plays a role in the synthesis and repair of DNA and the generation of methyl groups. Folic ac...
Folate derivatives are required for nucleotide/DNA synthesis and DNA methylation. Methylenetetrahydr...
Due to emerging evidence linking high folic acid (FA) intake to certain adverse health effects, many...
Folate metabolism can be an effective target for cancer treatment. However, standard cell culture co...
Folic acid plays a key role in the maintenance of genomic stability, providing methyl groups for the...
Methylation is an essential biochemical mechanism that is central to the transmission of life, and c...
Folic acid and natural folates are B group vitamins obtained exclusively from the diet. Biochemicall...
Food fortification with synthetic folic acid (FA), along with supplementation, results in a marked i...
Folate and methionine are critical for one-carbon metabolism, impacting DNA synthesis, repair, and m...