homocysteine and 5,11-methenyltetrahydrohomofolate

homocysteine has been researched along with 5,11-methenyltetrahydrohomofolate in 6 studies

Research

Studies (6)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's4 (66.67)29.6817
2010's2 (33.33)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Echenne, B; Giraudier, S; Landrieu, P; Saudubray, JM; Tonetti, C; Zittoun, J1
Garrido, A; Guerrero-Bosagna, C; Hirsch, S; Llanos, MN; Ronco, AM; Tamayo, D1
Balogh, E; Bereczky, Z; Boda, K; Császár, A; Czuriga, I; Edes, I; Ferdinandy, P; Kónya, C; Koszegi, Z; Muszbek, L1
Blinov, MN; Kapustin, SI; Klenkova, NA; Saltykova, NB; Shmeleva, VM1
Abaterusso, C; Bellinghieri, G; Cirillo, G; Cirillo, M; Coppola, S; De Santo, NG; Di Iorio, B; Ingrosso, D; Lanza, D; Lupo, A; Perna, AF; Raiola, I; Raiola, P; Santoro, D; Satta, E; Savica, V; Sepe, I; Tirino, G; Violetti, E1
Ansseau, M; Boemer, F; Bours, V; Philippe, P; Quadros, EV; Ramaekers, VT; Sequeira, JM; Thöny, B1

Other Studies

6 other study(ies) available for homocysteine and 5,11-methenyltetrahydrohomofolate

ArticleYear
Relations between molecular and biological abnormalities in 11 families from siblings affected with methylenetetrahydrofolate reductase deficiency.
    European journal of pediatrics, 2003, Volume: 162, Issue:7-8

    Topics: Child; Female; Folic Acid; Genes, Recessive; Homocysteine; Humans; Hyperhomocysteinemia; Male; Metabolism, Inborn Errors; Methylenetetrahydrofolate Reductase (NADPH2); Mutation; Polymorphism, Genetic; RNA Splice Sites

2003
Effect of homocysteine, folates, and cobalamin on endothelial cell- and copper-induced LDL oxidation.
    Lipids, 2005, Volume: 40, Issue:3

    Topics: Cells, Cultured; Copper; Endothelium, Vascular; Folic Acid; Homocysteine; Humans; Kinetics; Lipoproteins, LDL; Reference Values; Umbilical Veins; Vitamin B 12

2005
[Increase of homocysteine in cardiovascular diseases in Hungary].
    Orvosi hetilap, 2006, Sep-03, Volume: 147, Issue:35

    Topics: Adult; Aged; C-Reactive Protein; Cardiovascular Diseases; Cholesterol, HDL; COUP Transcription Factor II; Diabetes Mellitus, Type 2; Factor XIII; Female; Folic Acid; Homocysteine; Humans; Hungary; Hyperhomocysteinemia; Linear Models; Male; Middle Aged; Patient Selection; Polymorphism, Genetic; Retrospective Studies; Risk Factors; Vitamin B 12

2006
[Features of allele polymorphism of genes involved in homocysteine and folate metabolism in patients with atherosclerosis of the lower extremity arteries].
    Vestnik khirurgii imeni I. I. Grekova, 2009, Volume: 168, Issue:6

    Topics: Alleles; Atherosclerosis; DNA; Female; Ferredoxin-NADP Reductase; Flavoproteins; Folic Acid; Follow-Up Studies; Genetic Predisposition to Disease; Genotype; Homocysteine; Humans; Leg; Male; Middle Aged; Polymerase Chain Reaction; Polymorphism, Genetic; Prognosis; Severity of Illness Index

2009
Therapy of hyperhomocysteinemia in hemodialysis patients: effects of folates and N-acetylcysteine.
    Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation, 2012, Volume: 22, Issue:5

    Topics: Acetylcysteine; Aged; Drug Therapy, Combination; Female; Folic Acid; Homocysteine; Humans; Hyperhomocysteinemia; Kidney Failure, Chronic; Male; Middle Aged; Renal Dialysis

2012
Folinic acid treatment for schizophrenia associated with folate receptor autoantibodies.
    Molecular genetics and metabolism, 2014, Volume: 113, Issue:4

    Topics: Adolescent; Adult; Autoantibodies; Biopterins; Child; Female; Folate Receptor 1; Folic Acid; Homocysteine; Humans; Leucovorin; Male; Middle Aged; Schizophrenia; Young Adult

2014