Dysregulation of the one-carbon metabolic pathway, which controls nucleotide synthesis and DNA methylation, may promote lymphomagenesis. We evaluated the association between polymorphisms in one-carbon metabolism genes and risk of non-Hodgkin lymphoma (NHL) in a population-based case-control study in Australia. Cases (n = 561) and controls (n = 506) were genotyped for 14 selected single-nucleotide polymorphisms in 10 genes (CBS, FPGS, FTHFD, MTHFR, MTHFS, MTR, SHMT1, SLC19A1, TCN1, and TYMS). We also conducted a meta-analysis of all studies of Caucasian populations investigating the association between MTHFR Ex5+79C > T (a.k.a., 677C>T) and NHL risk. A global test of 13 genotypes was statistically significant for diffuse large B-cell lympho...
Molecular and genetic evidence suggests that DNA repair pathways may contribute to lymphoma suscepti...
Abstract: Folate and methionine metabolism is involved in DNA synthesis and methylation processes. P...
Molecular and genetic evidence suggests that DNA repair pathways may contribute to lymphoma suscepti...
Dysregulation of the one-carbon metabolic pathway, which controls nucleotide synthesis and DNA methy...
The methylenetetrahydrofolate reductase (MTHFR) gene codes for the MTHFR enzyme which plays a key ro...
An imbalance in folate metabolism can adversely affect DNA synthesis and methylation systems which c...
Introduction. Exploring lymphoma risk associated with metabolic gene polymorphisms might provide clu...
Genetic instability, including chromosomal imbalance, is important in the pathogenesis of lymphoprol...
Several polymorphic gene variants within one-carbon metabolism, an essential pathway for nucleotide ...
BackgroundMethylation systems in the cells play an important role in the metabolic processes such as...
Non-Hodgkin lymphomas (NHL) are a heterogeneous group of solid tumours of lymphoid cell origin. Thre...
Folate and methionine metabolism is involved in DNA synthesis and methylation processes. Polymorphis...
Evidence supporting the contribution of oxidative stress to key pathways in cancer, such as inflamma...
Oxidative damage caused by reactive oxygen species (ROS) and other free radicals is involved in a nu...
Folate and one-carbon metabolism are linked to cancer risk through their integral role in DNA synthe...
Molecular and genetic evidence suggests that DNA repair pathways may contribute to lymphoma suscepti...
Abstract: Folate and methionine metabolism is involved in DNA synthesis and methylation processes. P...
Molecular and genetic evidence suggests that DNA repair pathways may contribute to lymphoma suscepti...
Dysregulation of the one-carbon metabolic pathway, which controls nucleotide synthesis and DNA methy...
The methylenetetrahydrofolate reductase (MTHFR) gene codes for the MTHFR enzyme which plays a key ro...
An imbalance in folate metabolism can adversely affect DNA synthesis and methylation systems which c...
Introduction. Exploring lymphoma risk associated with metabolic gene polymorphisms might provide clu...
Genetic instability, including chromosomal imbalance, is important in the pathogenesis of lymphoprol...
Several polymorphic gene variants within one-carbon metabolism, an essential pathway for nucleotide ...
BackgroundMethylation systems in the cells play an important role in the metabolic processes such as...
Non-Hodgkin lymphomas (NHL) are a heterogeneous group of solid tumours of lymphoid cell origin. Thre...
Folate and methionine metabolism is involved in DNA synthesis and methylation processes. Polymorphis...
Evidence supporting the contribution of oxidative stress to key pathways in cancer, such as inflamma...
Oxidative damage caused by reactive oxygen species (ROS) and other free radicals is involved in a nu...
Folate and one-carbon metabolism are linked to cancer risk through their integral role in DNA synthe...
Molecular and genetic evidence suggests that DNA repair pathways may contribute to lymphoma suscepti...
Abstract: Folate and methionine metabolism is involved in DNA synthesis and methylation processes. P...
Molecular and genetic evidence suggests that DNA repair pathways may contribute to lymphoma suscepti...