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Journal Article
Toxicology and Applied Pharmacology, ISSN 0041-008X, 2010, Volume 244, Issue 2, pp. 99 - 105
Based on epidemiological data, chronic exposure to high levels of inorganic arsenic in drinking water is carcinogenic to humans, inducing skin, urinary bladder... 
Dimethylarsinous acid (DMA III) | Urinary bladder, urothelial cell cytotoxicity, hyperplasia, dimethylmonothioarsinic acid (DMMTA V) | Monomethylmonothioarsonic acid (MMMTA V) | Arsenite (As III) | Monomethylmonothioarsonic acid (MMMTA | Arsenite (As | Dimethylarsinous acid (DMA | Urinary bladder, urothelial cell cytotoxicity, hyperplasia, dimethylmonothioarsinic acid (DMMTA | Urinary bladder, urothelial cell cytotoxicity, hyperplasia | IN-VITRO | Arsenite (As-III) | Monomethylmonothioarsonic acid (MMMTA(V)) | SPECIATION | CARCINOGENICITY | DIMETHYLARSINIC ACID | PHARMACOLOGY & PHARMACY | TOXICITY | TOXICOLOGY | Dimethylarsinous acid (DMA(III)) | dimethylmonothioarsinic acid (DMMTA(V)) | Sodium Compounds - metabolism | Urothelium - metabolism | Humans | Rats, Inbred F344 | Sodium Compounds - administration & dosage | Dose-Response Relationship, Drug | Sulfhydryl Compounds - metabolism | Arsenicals - metabolism | Female | Arsenites - urine | Cell Line | Sulfhydryl Compounds - urine | Urinary Bladder - metabolism | Sodium Compounds - urine | Rats | Arsenites - metabolism | Animals | Arsenic Poisoning - metabolism | Arsenites - administration & dosage | Diet | Arsenic Poisoning - urine | Urinary Bladder - drug effects | Methylation | Urothelium - drug effects | Cell Line, Transformed | Arsenic | Metabolites | Lung cancer | Arsenic compounds | Index Medicus | BODY FLUIDS | OXYGEN COMPOUNDS | SODIUM COMPOUNDS | HYDROGEN COMPOUNDS | LUNGS | RATS | ANIMAL TISSUES | 60 APPLIED LIFE SCIENCES | PRIMATES | ALKALI METAL COMPOUNDS | ELEMENTS | NECROSIS | EPITHELIUM | URINE | VERTEBRATES | BLADDER | DRINKING WATER | SKIN | BIOLOGICAL WASTES | MAMMALS | WATER | ANIMALS | ARSENIC COMPOUNDS | METABOLITES | RODENTS | NEOPLASMS | BIOLOGICAL MATERIALS | CARCINOGENS | CELL PROLIFERATION | WASTES | NONMETALS | OXYGEN | ORGANS | URINARY TRACT | CHRONIC EXPOSURE | DISEASES | DOSES | RESPIRATORY SYSTEM | MEN | MAN | BODY | MALES | MATERIALS | PATHOLOGICAL CHANGES
Journal Article
The New phytologist, ISSN 0028-646X, 2015, Volume 205, Issue 1, pp. 240 - 254
Overexpression of bacterial γ-glutamylcysteine synthetase in the cytosol of × produces higher glutathione (GSH) concentrations in leaves, thereby indicating... 
Full papers | Cadmium | Leaves | Messenger RNA | Genes | Plant roots | Plants | Root tips | Transgenic plants | Genotypes | antioxidant | plasma membrane H+‐ATPase | glutathione | ion flux | phytoremediation | Populus | oxidative stress | cadmium (Cd) | Ion flux | Oxidative stress | Cadmium (Cd) | ATPase | Plasma membrane H | Antioxidant | Glutathione | Phytoremediation | ARABIDOPSIS-THALIANA | PHYTOCHELATIN SYNTHASE | PHYSIOLOGICAL-RESPONSES | GLUTATHIONE SYNTHESIS | TRANSCRIPTIONAL RESPONSES | PLANT SCIENCES | plasma membrane H+-ATPase | POPULUS X CANESCENS | BRASSICA-NAPUS | GENE-EXPRESSION | HEAVY-METAL RESISTANCE | LONG-DISTANCE TRANSPORT | Inactivation, Metabolic | Reactive Oxygen Species - metabolism | Calcium - metabolism | Genes, Plant | Antioxidants - metabolism | Carbohydrate Metabolism - genetics | Populus - genetics | Cadmium - metabolism | RNA, Messenger - metabolism | Sulfhydryl Compounds - metabolism | Biological Transport | Plants, Genetically Modified | Populus - metabolism | Gene Expression Regulation, Plant | Superoxides - metabolism | Dipeptides - metabolism | Principal Component Analysis | Hydrogen - metabolism | Escherichia coli - enzymology | Plant Roots - metabolism | RNA, Messenger - genetics | Wood - metabolism | Plant Leaves - metabolism | Models, Biological | Plant Bark - metabolism | Populus - growth & development
Journal Article
Journal Article
Molecular Neurobiology, ISSN 0893-7648, 11/2016, Volume 53, Issue 9, pp. 6459 - 6475
...Oxidative Stress, Disrupted Energy Metabolism, and Altered Signaling Pathways in Glutaryl-CoA Dehydrogenase Knockout Mice: Potential Implications of Quinolinic... 
Signaling pathways | Neurology | Neurosciences | Energy metabolism | Biomedicine | Glutaric acidemia | Redox homeostasis | Neurobiology | Inflammatory response | Quinolinic acid | Cell Biology | PLASMA-MEMBRANES | 3-HYDROXYGLUTARIC ACID | NMDA RECEPTORS | NITRIC-OXIDE SYNTHASE | FACTOR-KAPPA-B | GLUTAMATE UPTAKE | NEUROSCIENCES | CEREBRAL-CORTEX | PRIMARY NEURONAL CULTURES | ANTIOXIDANT RESPONSE ELEMENT | CREATINE-KINASE | Brain Diseases, Metabolic - pathology | Glutaryl-CoA Dehydrogenase - metabolism | Glutathione - metabolism | Antioxidants - metabolism | Fluoresceins - metabolism | Nitrites - metabolism | NF-kappa B - metabolism | Extracellular Signal-Regulated MAP Kinases - metabolism | Electron Transport Complex IV - metabolism | Amino Acid Metabolism, Inborn Errors - metabolism | Sulfhydryl Compounds - metabolism | Neostriatum - drug effects | Lipid Peroxidation - drug effects | Neostriatum - metabolism | Quinolinic Acid - administration & dosage | Quinolinic Acid - toxicity | Amino Acid Metabolism, Inborn Errors - pathology | Brain Diseases, Metabolic - enzymology | Proto-Oncogene Proteins c-akt - metabolism | Superoxide Dismutase - metabolism | Malondialdehyde - metabolism | Glutathione Peroxidase - metabolism | Neostriatum - pathology | Oxidation-Reduction | Brain Diseases, Metabolic - metabolism | Mice, Knockout | Nitrates - metabolism | Animals | Lactates - metabolism | Diet | Signal Transduction - drug effects | Models, Biological | NF-E2-Related Factor 2 - metabolism | Oxidative Stress - drug effects | Amino Acid Metabolism, Inborn Errors - enzymology | Energy Metabolism - drug effects | Glutaryl-CoA Dehydrogenase - deficiency | Antioxidants | Lysine | Creatine kinase | Glutathione transferase | Physiological aspects | Superoxide | Inflammation | Creatine | Homeostasis | Signal transduction | Oxidative stress | Bioenergetics | Index Medicus
Journal Article