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Plant Physiology and Biochemistry, ISSN 0981-9428, 01/2017, Volume 110, pp. 59 - 69
The present study describes the role of zinc oxide nanoparticles (ZnONPs) in reversing oxidative stress symptoms induced by heavy metal (Cd and Pb) exposure in... 
Lead | Cadmium | Genetic variability | Phytotoxicity | Antioxidative enzymes | Photosynthetic pigments | CATALASE | PLANT | TOLERANCE | GRAPHENE | CHROMIUM VI PHYTOTOXICITY | PLANT SCIENCES | PEROXIDASE | GROWTH | STRESS | MACROALGAE | Metals, Heavy - metabolism | Antioxidants - chemistry | Cadmium - metabolism | Seedlings - growth & development | Zinc Oxide - chemistry | Plant Leaves - drug effects | Plant Proteins - metabolism | Lead - toxicity | DNA, Plant - genetics | Superoxide Dismutase - metabolism | Malondialdehyde - metabolism | Cadmium - toxicity | Lead - metabolism | Metal Nanoparticles - chemistry | Fabaceae - growth & development | Antioxidants - pharmacology | Chlorophyll - metabolism | Seedlings - drug effects | DNA, Plant - metabolism | Catalase - metabolism | Metal Nanoparticles - administration & dosage | Metals, Heavy - toxicity | Plant Leaves - metabolism | Photosynthesis - drug effects | Plant Leaves - growth & development | Antioxidants - administration & dosage | Carotenoids - metabolism | Fabaceae - metabolism | Random Amplified Polymorphic DNA Technique | Fabaceae - drug effects | Oxidative Stress - drug effects | Peroxidase - metabolism | Seedlings - metabolism | Nanoparticles | Enzymes | Plant physiology | Analysis | Genetically modified organisms | Green technology | Zinc oxide | Genetic engineering | Superoxide | Molecular biology | Photosynthesis
Journal Article
Chemosphere, ISSN 0045-6535, 03/2016, Volume 147, pp. 88 - 97
Journal Article
Apoptosis, ISSN 1360-8185, 8/2012, Volume 17, Issue 8, pp. 852 - 870
The wide scale use of Zinc oxide (ZnO) nanoparticles in the world consumer market makes human beings more prone to the exposure to ZnO nanoparticles and its... 
Biochemistry, general | Oxidative stress | DNA damage | Zinc oxide nanoparticles | Mechanism of toxicity | Oncology | Human liver cells | MAPK | Cell Biology | Virology | Biomedicine | Cancer Research | Apoptosis | CANCER-CELLS | PARTICLE SOLUBILITY | COMET ASSAY | BIOCHEMISTRY & MOLECULAR BIOLOGY | TOXICITY | CELL BIOLOGY | IN-VITRO | GENOTOXICITY | ZNO NANOPARTICLES | TITANIUM-DIOXIDE | STRESS | CYTOTOXICITY | L-Lactate Dehydrogenase - metabolism | Mutagens - toxicity | Phosphorylation | Reactive Oxygen Species - metabolism | Oxidative Stress | Apoptosis - drug effects | Mitochondria, Liver - metabolism | Humans | Zinc Oxide - toxicity | Zinc Oxide - metabolism | Membrane Potential, Mitochondrial | Cell Survival - drug effects | Oxidation-Reduction | Enzyme Inhibitors - pharmacology | Nanoparticles - ultrastructure | Zinc Oxide - pharmacology | Antioxidants - pharmacology | Nanoparticles - toxicity | Apoptosis Regulatory Proteins - metabolism | Hep G2 Cells | Mitochondria, Liver - drug effects | Particle Size | Mitogen-Activated Protein Kinases - antagonists & inhibitors | Protein Processing, Post-Translational | DNA Damage | Lipid Peroxidation | Mitogen-Activated Protein Kinases - metabolism | Nanoparticles | Cell death | DNA | Physiological aspects | Zinc oxide | Mitochondrial DNA | Tumor proteins | Cells | Nanotechnology | Index Medicus
Journal Article
Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 06/2013, Volume 8, Issue 6, p. e65704
In view of the steadily increasing use of zinc oxide nanoparticles in various industrial and consumer applications, toxicological investigations to evaluate... 
LUNG | SIGNALING PATHWAYS | ACTIVATION | PROTEIN | OXIDATIVE DNA-DAMAGE | NRF2 | DISSOLUTION | MULTIDISCIPLINARY SCIENCES | STRESS | CELL-DEATH | P53 | Caspase 9 - genetics | Reactive Oxygen Species - metabolism | Oxidative Stress | Apoptosis - drug effects | Humans | Caspase 3 - metabolism | NADPH Oxidases - metabolism | Zinc Oxide - toxicity | Reactive Oxygen Species - agonists | Caspase 3 - genetics | NADPH Oxidases - genetics | Bone Marrow Cells - drug effects | Caspase 9 - deficiency | NF-E2-Related Factor 2 - genetics | DNA Fragmentation - drug effects | Cell Line | Signal Transduction | Bone Marrow Cells - cytology | Jurkat Cells | Mice, Inbred C57BL | Gene Expression Regulation | Necrosis - metabolism | Macrophages - cytology | Nanoparticles - toxicity | Necrosis - chemically induced | Macrophages - metabolism | Animals | NF-E2-Related Factor 2 - metabolism | Macrophages - drug effects | Mice | Bone Marrow Cells - metabolism | Nanoparticles | Physiological aspects | Zinc oxide | Genetic aspects | Research | Macrophages | Apoptosis | Oxidative stress | Reactive oxygen species | Particle size | Toxicity | DNA damage | Immune clearance | Oxidase | Nuclear engineering | Cytotoxicity | Lymphocytes T | Caspase-3 | Nuclei | NAD(P)H oxidase | Necrosis | Proteins | Antioxidants | Microorganisms | Lymphocytes | DNA fragmentation | Gangrene | Bone marrow | Deoxyribonucleic acid--DNA | Outdoor air quality | Enzymes | Immune response | Environmental health | Particulates | Caspase | Superoxide | Zinc | Medicine | Nuclear safety | Zinc oxides | Cell death | Breakage | Caspase-9 | Nanotechnology | Deoxyribonucleic acid | DNA
Journal Article
Journal Article
Plant Physiology and Biochemistry, ISSN 0981-9428, 01/2017, Volume 110, pp. 118 - 127
Journal Article
PLoS ONE, ISSN 1932-6203, 10/2016, Volume 11, Issue 10, pp. e0164434 - e0164434
Journal Article
PLoS ONE, ISSN 1932-6203, 08/2017, Volume 12, Issue 8, p. e0182550
The aim of this study was to compare the effect of dietary supplementation with low dose of porous and nano zinc oxide (ZnO) on weaning piglets, and to... 
PHARMACOLOGICAL CONCENTRATIONS | WEANLING PIGS | ANTIBACTERIAL ACTIVITY | ZNO NANOPARTICLES | IMMUNOLOGICAL CHARACTERISTICS | MULTIDISCIPLINARY SCIENCES | ESCHERICHIA-COLI | WEANED PIGLETS | INFLAMMATORY CYTOKINES | GROWTH-PERFORMANCE | INTESTINAL PERMEABILITY | Weaning | Diarrhea - prevention & control | RNA, Messenger - metabolism | Swine - growth & development | Intestines - immunology | Intestines - anatomy & histology | Kidney - metabolism | Zinc - analysis | Zinc Oxide - chemistry | Malondialdehyde - blood | Muscles - metabolism | Glutathione Peroxidase - metabolism | Intestines - growth & development | Intestines - injuries | Kidney - growth & development | Trefoil Factor-3 - metabolism | Diarrhea - veterinary | Swine Diseases - prevention & control | Zinc Oxide - administration & dosage | Particle Size | Animals | NF-E2-Related Factor 2 - metabolism | Porosity | Kidney Calculi - veterinary | Dietary Supplements | Kidney Calculi - prevention & control | Animal Feed | Nanoparticles | Usage | Dietary supplements | Physiological aspects | Zinc oxide | Genetic aspects | Research | Trefoil factor | Syngeneic grafts | mRNA | Small intestine | Jejunum | Intestine | Rodents | Peroxidase | Supplementation | Injury analysis | Glutathione | Glutathione peroxidase | Kidneys | Nutrition | Duodenum | Diarrhea | Inflammation | Nanostructure | Zinc | Hogs | Zinc oxides | Diet | Feeds
Journal Article
Science, ISSN 0036-8075, 12/1999, Volume 286, Issue 5449, pp. 2498 - 2500
Journal Article