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Organic Letters, ISSN 1523-7060, 01/2011, Volume 13, Issue 1, pp. 22 - 25
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 06/2013, Volume 135, Issue 24, pp. 9181 - 9185
Journal Article
Molecular and Cellular Biochemistry, ISSN 0300-8177, 8/2012, Volume 367, Issue 1, pp. 153 - 163
The aim of this study was to investigate the in vitro antioxidant activity of 2,2′-dipyridyl diselenide (e) by comparing this effect with... 
Life Sciences | Biochemistry, general | Diselenide | Medical Biochemistry | Oncology | Selenium | Cardiology | Organoselenium | Antioxidant | ASSAY | TRIFLUOROMETHYL-DIPHENYL DISELENIDE | LIPID-PEROXIDATION | DELTA-AMINOLEVULINATE DEHYDRATASE | CELL BIOLOGY | IN-VITRO | IRON CHELATOR 2,2'-DIPYRIDYL | DEHYDROASCORBATE REDUCTASE | MICE | GLUTATHIONE-S-TRANSFERASE | RAT-BRAIN | Protein Carbonylation | Liver - enzymology | Antioxidants - chemistry | Organosilicon Compounds - pharmacology | Rats, Wistar | 2,2'-Dipyridyl - analogs & derivatives | Male | Oxidoreductases - chemistry | Organoselenium Compounds - chemistry | Organoselenium Compounds - pharmacology | Porphobilinogen Synthase - metabolism | Liver - drug effects | Ascorbic Acid - chemistry | Ferrous Compounds - chemistry | Tissue Extracts | Benzene Derivatives - pharmacology | 2,2'-Dipyridyl - pharmacology | Dehydroascorbic Acid - chemistry | Oxidation-Reduction | 2,2'-Dipyridyl - chemistry | Rats | Thiobarbituric Acid Reactive Substances - metabolism | Antioxidants - pharmacology | Glutathione Transferase - chemistry | Animals | Organosilicon Compounds - chemistry | Glutathione - chemistry | Porphobilinogen Synthase - antagonists & inhibitors | Benzene Derivatives - chemistry | Lipid Peroxidation | Antioxidants | Glutathione transferase | Biochemistry | Toxicity | Rodents | Liver | Index Medicus
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 11/2018, Volume 57, Issue 22, pp. 14374 - 14385
Monofunctional pyriplatin analogues cis-[Pt­(NH3)2(L)­Cl]­(NO3) (1–3) having boron-dipyrromethene (BODIPY) pendants (L) with... 
BODIPY DYES | PHENANTHRIPLATIN | DNA | CONSEQUENCES | ABSORPTION | EXCHANGE | BINDING | CANCER | DERIVATIVES | PLATINUM COMPLEXES | CHEMISTRY, INORGANIC & NUCLEAR | Photosensitizing Agents - chemistry | Apoptosis - drug effects | Antineoplastic Agents - chemical synthesis | Humans | Membrane Potential, Mitochondrial - drug effects | Organoplatinum Compounds - pharmacology | Singlet Oxygen - metabolism | Photosensitizing Agents - pharmacology | G2 Phase Cell Cycle Checkpoints - drug effects | Boron Compounds - chemical synthesis | Cattle | Light | Antineoplastic Agents - radiation effects | Antineoplastic Agents - pharmacology | Porphobilinogen - analogs & derivatives | Organoplatinum Compounds - chemistry | Boron Compounds - chemistry | Photosensitizing Agents - chemical synthesis | Photosensitizing Agents - radiation effects | Boron Compounds - pharmacology | Mitochondria - metabolism | Boron Compounds - radiation effects | Mitochondria - drug effects | Antineoplastic Agents - chemistry | Porphobilinogen - chemistry | Organoplatinum Compounds - chemical synthesis | Microscopy, Confocal | Porphobilinogen - pharmacology | DNA - chemistry | Animals | Organoplatinum Compounds - radiation effects | Cell Line, Tumor | Porphobilinogen - chemical synthesis | Porphobilinogen - radiation effects | G1 Phase Cell Cycle Checkpoints - drug effects | Microscopy, Fluorescence
Journal Article
Biochemistry, ISSN 0006-2960, 08/2017, Volume 56, Issue 30, pp. 3889 - 3893
The diverse gut microbial communities are crucial for host health. How the interactions between microbial communities and between host and microbes influence... 
CORE | BACTERIA | PEPTIDOGLYCAN | AZIDES | BIOCHEMISTRY & MOLECULAR BIOLOGY | TERMINAL ALKYNES | SPATIAL-ORGANIZATION | Vancomycin - analysis | Optical Imaging | Sugar Acids - pharmacology | Fluorescent Dyes - analysis | Fluorescent Dyes - metabolism | Sugar Acids - metabolism | Gram-Negative Bacteria - metabolism | Dysbiosis - microbiology | Azides - chemistry | Gram-Negative Bacteria - isolation & purification | Sugar Acids - analysis | Vancomycin - analogs & derivatives | Fluorescent Dyes - pharmacology | Porphobilinogen - analogs & derivatives | Azides - pharmacology | Rhodamines - chemistry | Azides - metabolism | Carbocyanines - analysis | Gram-Positive Bacteria - growth & development | Fluorescent Dyes - chemistry | Specific Pathogen-Free Organisms | Microbial Viability - drug effects | Click Chemistry | Gram-Positive Bacteria - cytology | Mice, Inbred C57BL | Gastrointestinal Microbiome | Gastrointestinal Tract - microbiology | Cell Wall - chemistry | Porphobilinogen - analysis | Porphobilinogen - chemistry | Azides - analysis | Dysbiosis - diagnostic imaging | Diagnostic Techniques, Digestive System | Gram-Positive Bacteria - metabolism | Sugar Acids - chemistry | Pilot Projects | Animals | Gastrointestinal Tract - diagnostic imaging | Lipopolysaccharides - analysis | Gram-Negative Bacteria - growth & development | Lipopolysaccharides - biosynthesis | Gram-Negative Bacteria - cytology | Gram-Positive Bacteria - isolation & purification | Lipopolysaccharides - chemistry | Rhodamines - analysis | Gram-negative bacterial infections | Research | Microbiota (Symbiotic organisms) | Lipopolysaccharides
Journal Article
Journal Article
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