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Journal Article
Environmental Toxicology and Chemistry, ISSN 0730-7268, 07/2017, Volume 36, Issue 7, pp. 1755 - 1763
Glyphosate‐based herbicides are the most commonly used worldwide because they are effective and relatively nontoxic to nontarget species. Unlimited and... 
Environmental toxicology | Phytotoxicity | Roundup | Genotoxicity | Zebrafish | Aquatic toxicology | Herbicide | DNA-DAMAGE | TOXICITY | NEUROTOXICITY | ENVIRONMENTAL SCIENCES | FORMULATIONS | AMINOMETHYLPHOSPHONIC ACID | FISH | TOXICOLOGY | SURFACE WATERS | SHORT-TERM | EXPOSURE | Glycine - analogs & derivatives | Humans | Toxicity Tests, Acute | Embryo, Nonmammalian - drug effects | Plant Roots - drug effects | Glycine - toxicity | Lycopersicon esculentum - growth & development | Seeds - growth & development | Larva - drug effects | Larva - growth & development | Embryo, Nonmammalian - physiology | Plant Roots - growth & development | Cucumis sativus - drug effects | Germination - drug effects | Lycopersicon esculentum - drug effects | Lettuce - drug effects | Seeds - drug effects | Herbicides - toxicity | Lethal Dose 50 | Lettuce - growth & development | Cucumis sativus - growth & development | Zebrafish - growth & development | Artemia - drug effects | Animals | Artemia - growth & development | Zebrafish - physiology | Glyphosate | Analysis | Formulations | Larvae | Nontarget organisms | Seeds | Toxicity | Hatching | Germination | Pesticides | Ecology | Organisms | Artemia | Environmental hazards | Herbicides | Aquatic environment | Agrochemicals | Classification | Toxicity testing | Ecological monitoring | Tomatoes | Acute toxicity | Index Medicus
Journal Article
European Journal of Medicinal Chemistry, ISSN 0223-5234, 09/2014, Volume 84, pp. 343 - 363
Fourteen new organotin(IV) complexes with general formula R SnL or R SnL where R = CH , C H , C H , C H , C H , CH –C H , C(CH ) , C H and... 
Organotin(IV) compound | Antitumor activity | Cytotoxicity | Antimicrobial activity | DNA interaction | Antileishmanial activity | CHEMISTRY, MEDICINAL | ACID | MOLECULAR-STRUCTURE | ANTITUMOR-ACTIVITY | DISK DIFFUSION | NMR | SPECTROSCOPIC CHARACTERIZATION | X-RAY STRUCTURES | BIOLOGICAL SCREENINGS | DERIVATIVES | CALF THYMUS DNA | Organotin Compounds - chemistry | Parasitic Sensitivity Tests | Humans | Bacteria - drug effects | Crystallography, X-Ray | Antifungal Agents - chemical synthesis | Antifungal Agents - chemistry | Structure-Activity Relationship | Dose-Response Relationship, Drug | Microbial Sensitivity Tests | Organotin Compounds - chemical synthesis | Anti-Bacterial Agents - chemistry | Leishmania - drug effects | Antiprotozoal Agents - chemical synthesis | Molecular Structure | Antifungal Agents - pharmacology | Fungi - drug effects | Organotin Compounds - pharmacology | Models, Molecular | Antiprotozoal Agents - chemistry | Antiprotozoal Agents - pharmacology | Solanum tuberosum - microbiology | DNA, Single-Stranded - chemistry | Solanum tuberosum - drug effects | Anti-Bacterial Agents - chemical synthesis | Artemia - drug effects | Animals | DNA, Single-Stranded - drug effects | Plasmids | Ligands | Anti-Bacterial Agents - pharmacology | Plant Tumors - microbiology | Tin compounds | Amphotericin B | Analysis | Spectrum analysis | DNA | Genetic research | Antiparasitic agents | Chemical properties | Mass spectrometry
Journal Article
International Journal of Pharmaceutics, ISSN 0378-5173, 09/2015, Volume 493, Issue 1-2, pp. 271 - 284
Topical glucocorticosteroids were incorporated into nanocarrier-based formulations, to overcome side effects of conventional formulations and to achieve... 
Nanoparticles | Transdermal drug delivery | Betamethasone-21-acetate | Chronic inflammation | Oleic acid | Poly-ϵ-caprolactone | Poly-ε-caprolactone | VIVO | DRUG-DELIVERY | RELEASE | TOPICAL CORTICOSTEROIDS | IN-VITRO EVALUATION | NANOSTRUCTURED LIPID CARRIERS | Poly-epsilon-caprolactone | STEARIC-ACID | PHARMACOLOGY & PHARMACY | LOADED NANOPARTICLES | SKIN | DERIVATIVES | Betamethasone - administration & dosage | Nanoparticles - chemistry | Rats, Wistar | Humans | Drug Carriers - administration & dosage | Male | Saccharomyces cerevisiae - drug effects | Administration, Cutaneous | Betamethasone - pharmacokinetics | Drug Carriers - chemistry | Anti-Inflammatory Agents - administration & dosage | Anti-Inflammatory Agents - pharmacokinetics | Betamethasone - blood | Poloxamer - chemistry | Betamethasone - chemistry | Cell Line | Cell Survival - drug effects | Drug Stability | Skin Absorption | Acrylic Resins - chemistry | Anti-Inflammatory Agents - blood | Artemia - drug effects | Animals | Anti-Inflammatory Agents - chemistry | Keratinocytes - drug effects | Drug Liberation | Drug Carriers - pharmacokinetics | Nanoparticles - administration & dosage | Oleic Acid - chemistry | Saccharomyces cerevisiae - growth & development | Corticosteroids | Anti-inflammatory drugs | Pharmacy | Drugstores | Fatty acids | Biomedical engineering | Steroids
Journal Article
Environmental Toxicology and Chemistry, ISSN 0730-7268, 07/2018, Volume 37, Issue 7, pp. 1998 - 2012
Journal Article
European Journal of Medicinal Chemistry, ISSN 0223-5234, 05/2013, Volume 63, pp. 185 - 195
Journal Article