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HOMOCYSTEINE METABOLISM IN PREGNANCY AND DEVELOPMENTAL IMPACTS
Stephen D'Souza,
Jocelyn Glazier
Division of Developmental Biology & Medicine (L5)
Division of Evolution, Infection and Genomics
Research output
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peer-review
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Dive into the research topics of 'HOMOCYSTEINE METABOLISM IN PREGNANCY AND DEVELOPMENTAL IMPACTS'. Together they form a unique fingerprint.
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Immunology and Microbiology
Methylation
100%
Neural Tube
100%
Nucleotide Metabolism
66%
Metabolite
33%
Embryo Development
33%
Cell Function
33%
DNA Polymorphism
33%
Enzyme Activity
33%
Metabolism
33%
Placental Transfer
33%
Transcription Regulation
33%
Neuroscience
Metabolic Pathway
100%
Homocysteine
100%
Methionine
42%
Folate
35%
Folic Acid
35%
Methylation
21%
Cyanocobalamin
21%
Neural Tube
21%
Cofactor
7%
S Adenosylmethionine
7%
Pyridoxine
7%
Tetrahydrofolic Acid
7%
Cell Function
7%
DNA Polymorphism
7%
Anabolism
7%
Methionine Synthase
7%
Enzyme Activity
7%
Transcription Regulation
7%
Placental Transfer
7%
5 Methyltetrahydrofolic Acid
7%
Cystathionine
7%
Biochemistry, Genetics and Molecular Biology
Metabolic Pathway
100%
Homocysteine
100%
Methionine
42%
Folic Acid
35%
Methylation
21%
Cyanocobalamin
21%
Neural Tube
21%
Nucleotide Metabolism
14%
Embryogenesis
7%
Gene Polymorphism
7%
Cofactors
7%
Tetrahydrofolate
7%
Vitamin B6
7%
Metabolite
7%
Cell Function
7%
Methionine Synthase
7%
Enzyme Activity
7%
S-Adenosyl Methionine
7%
Transcription Regulation
7%
Placental Transfer
7%
Cystathionine
7%
Pharmacology, Toxicology and Pharmaceutical Science
Homocysteine
100%
Methionine
42%
Folic Acid
35%
Vitamin B12
21%
Neural Tube Defect
21%
Methionine Synthase
7%
S-Adenosyl Methionine
7%
Methyl Group
7%
Tetrahydrofolic Acid
7%
5 Methyltetrahydrofolic Acid
7%
Pyridoxine
7%
Hyperhomocysteinemia
7%
Cystathionine
7%
Medicine and Dentistry
Tetrahydrofolic Acid
7%