Page last updated: 2024-08-21

homocystine and nitrous oxide

homocystine has been researched along with nitrous oxide in 4 studies

Research

Studies (4)

TimeframeStudies, this research(%)All Research%
pre-19903 (75.00)18.7374
1990's0 (0.00)18.2507
2000's1 (25.00)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Runciman, WB; Snoswell, AM; Xue, GP1
Bevan, JC; Chapman, VA; Clow, CL; Rosenblatt, DS1
Chanarin, I; Deacon, R; Halsey, M; Lumb, M; Minty, B; Nunn, J; Perry, J1
Hogan, K; Laxova, R; Rosenblatt, DS; Selzer, RR1

Other Studies

4 other study(ies) available for homocystine and nitrous oxide

ArticleYear
Perturbation of methionine metabolism in sheep with nitrous-oxide-induced inactivation of cobalamin.
    Biochemistry international, 1986, Volume: 12, Issue:1

    Topics: 5-Methyltetrahydrofolate-Homocysteine S-Methyltransferase; Animals; Betaine-Homocysteine S-Methyltransferase; Brain; Formiminoglutamic Acid; Homocystine; Liver; Male; Methionine; Methylmalonyl-CoA Mutase; Methyltransferases; Myocardium; Nitrous Oxide; Orchiectomy; S-Adenosylmethionine; Sheep; Vitamin B 12

1986
Effect of nitrous oxide anaesthesia on homocystine excretion.
    Canadian Anaesthetists' Society journal, 1982, Volume: 29, Issue:3

    Topics: Adolescent; Adult; Anesthesia; Child; Child, Preschool; Homocystine; Humans; Infant; Male; Nitrous Oxide; Vitamin B 12

1982
Inactivation of methionine synthase by nitrous oxide.
    European journal of biochemistry, 1980, Volume: 104, Issue:2

    Topics: 5-Methyltetrahydrofolate-Homocysteine S-Methyltransferase; Animals; Bone Marrow; Brain; Deoxyuridine; DNA Replication; Homocystine; Liver; Methyltransferases; Nitrous Oxide; Rats; Thymidine

1980
Adverse effect of nitrous oxide in a child with 5,10-methylenetetrahydrofolate reductase deficiency.
    The New England journal of medicine, 2003, Jul-03, Volume: 349, Issue:1

    Topics: 5-Methyltetrahydrofolate-Homocysteine S-Methyltransferase; 5,10-Methylenetetrahydrofolate Reductase (FADH2); Anesthetics, Inhalation; Cells, Cultured; DNA Mutational Analysis; Fatal Outcome; Fibroblasts; Folic Acid; Genes, Recessive; Homocysteine; Homocystine; Humans; Hyperhomocysteinemia; Infant; Male; Metabolism, Inborn Errors; Methionine; Methylenetetrahydrofolate Reductase (NADPH2); Nitrous Oxide; Oxidoreductases; Point Mutation; Polymorphism, Genetic; RNA

2003