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Molecules, ISSN 1420-3049, 11/2010, Volume 15, Issue 11, pp. 7532 - 7546
The chemical composition and antibacterial activity of essential oils from 10 commonly consumed herbs: Citrus aurantium, C. limon, Lavandula angustifolia,... 
Herbs | Human pathogens | Structure-activity | Essential oils | Microdilution method | Disc-diffusion | Natural antimicrobial agents | Food spoilage bacteria | LISTERIA-MONOCYTOGENES | disc-diffusion | microdilution method | FUNGI | ESCHERICHIA-COLI | CHEMISTRY, ORGANIC | OREGANO ESSENTIAL OIL | SALMONELLA-ENTERITIDIS | herbs | food spoilage bacteria | CHEMICAL-COMPOSITION | natural antimicrobial agents | ANTIFUNGAL ACTIVITIES | essential oils | human pathogens | structure-activity | Salvia officinalis - chemistry | Staphylococcus epidermidis - drug effects | Oils, Volatile - chemistry | Cyclohexenes - chemistry | Thymus Plant - chemistry | Citrus - chemistry | Oils, Volatile - pharmacology | Menthol - chemistry | Micrococcus luteus - drug effects | Terpenes - pharmacology | Monoterpenes - pharmacology | Terpenes - chemistry | Bridged Bicyclo Compounds - chemistry | Cyclohexanols - chemistry | Anti-Bacterial Agents - chemistry | Cyclohexanols - pharmacology | Camphor - pharmacology | Thymol - chemistry | Lavandula - chemistry | Camphor - chemistry | Enterobacter cloacae - drug effects | Plants, Medicinal - chemistry | Salmonella enteritidis - drug effects | Bridged Bicyclo Compounds - pharmacology | Pseudomonas aeruginosa - drug effects | Mentha piperita - chemistry | Menthol - pharmacology | Mentha spicata - chemistry | Thymol - pharmacology | Cyclohexenes - pharmacology | Monoterpenes - chemistry | Escherichia - drug effects | Anti-Bacterial Agents - pharmacology | Origanum - chemistry | Staphylococcus aureus - drug effects | Matricaria - chemistry | Proteus mirabilis - drug effects | Bacillus subtilis - drug effects
Journal Article
Advanced Materials, ISSN 0935-9648, 01/2016, Volume 28, Issue 2, pp. 254 - 262
A pyropheophorbide‐α‐based building block (Ppa‐PLGVRG‐Van) can be used to construct self‐aggregated superstructures in vivo for highly specific and sensitive... 
peptides | supramolecular | nanomaterials | bacterial infection | bioimaging | SYSTEM | CELLS | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CONTRAST AGENTS | MATERIALS SCIENCE, MULTIDISCIPLINARY | FUNCTIONAL PHOTOACOUSTIC MICROSCOPY | CHEMISTRY, PHYSICAL | IMAGING PROBES | NANOSCIENCE & NANOTECHNOLOGY | LIVING MICE | CANCER | CHEMISTRY, MULTIDISCIPLINARY | CARBON NANOTUBES | NANOPARTICLES | IN-VIVO | Gelatinases - chemistry | Vancomycin - chemical synthesis | Escherichia coli | Chlorophyll - analogs & derivatives | Myositis - complications | Bacterial Infections - complications | Vancomycin - chemistry | Tomography - methods | Vancomycin - analogs & derivatives | Water - chemistry | Chlorophyll - chemical synthesis | Photoacoustic Techniques - methods | Molecular Structure | Staphylococcus aureus | Disease Models, Animal | Myositis - diagnosis | Bacterial Infections - physiopathology | Chlorophyll - chemistry | Contrast Media - chemical synthesis | Animals | Staphylococcus epidermidis | Models, Biological | Nanostructures - chemistry | Contrast Media - chemistry | Mice | Bacterial Infections - diagnosis | Phantoms, Imaging | Myositis - physiopathology | Proteus vulgaris | Health aspects | Bacterial infections | Superstructures | Construction | Tomography | Bacteria | Construction specifications | Nanostructure | Diagnosis | Photoacoustic effect
Journal Article
Journal of Photochemistry & Photobiology, B: Biology, ISSN 1011-1344, 08/2019, Volume 197, p. 111541
Here, we report the novel fabrication of ZnO nanoparticles using the leaf extract. Gas chromatography-mass spectrometry (GC–MS) and proton nuclear magnetic... 
Biological properties | Biosynthesis | XRD | ZnO nanoparticles | TEM | Costus igneus | Hemolysis - drug effects | Plant Extracts - chemistry | Gram-Positive Bacteria - physiology | Gas Chromatography-Mass Spectrometry | Antioxidants - chemistry | Gram-Positive Bacteria - drug effects | Biocompatible Materials - chemistry | Humans | Costus - chemistry | Microbial Sensitivity Tests | Plant Extracts - metabolism | Zinc Oxide - chemistry | Anti-Bacterial Agents - chemistry | Erythrocytes - cytology | Costus - metabolism | Gram-Negative Bacteria - physiology | Biofilms - drug effects | Plant Leaves - chemistry | alpha-Amylases - antagonists & inhibitors | Green Chemistry Technology | Metal Nanoparticles - chemistry | Biocompatible Materials - pharmacology | alpha-Amylases - metabolism | Erythrocytes - drug effects | Anti-Bacterial Agents - chemical synthesis | Particle Size | Gram-Negative Bacteria - drug effects | Metal Nanoparticles - toxicity | Plant Leaves - metabolism | Insulin - chemistry | Erythrocytes - metabolism | Anti-Bacterial Agents - pharmacology | Water-borne diseases | Infrared spectroscopy | Nuclear magnetic resonance--NMR | Wurtzite | Photomicrographs | Nanoparticles | Antioxidants | Fabrication | Proteus | Leaves | Synthesis | Zinc oxide | Biocompatibility | Inhibition | Spectroscopy | Zinc coatings | Diabetes mellitus | Mass spectroscopy | Glucosidase | Insulin | Zinc | Plant extracts | Gas chromatography | Zinc oxides | Biofilms | Mass spectrometry | Proteus vulgaris | Functional groups | Vibrio
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Journal Article
Inorganic Chemistry, ISSN 0020-1669, 07/2007, Volume 46, Issue 15, pp. 5893 - 5903
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