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Biochemical Pharmacology, ISSN 0006-2952, 09/2017, Volume 139, pp. 3 - 14
Marine sponges have consistently been the richest source of new marine natural products with unprecedented chemical scaffolds and potent biological activities... 
Porifera | Marine natural products | Drug discovery | ANDROGEN RECEPTOR | INOSITOL 5-PHOSPHATASE | MAST-CELLS | PAPUA-NEW-GUINEA | STRUCTURE ELUCIDATION | MARINE SPONGE | SHIP1 ACTIVATOR AQX-1125 | IN-VIVO | PHARMACOLOGY & PHARMACY | CYSTITIS/BLADDER PAIN SYNDROME | RESISTANT PROSTATE-CANCER | Indans - adverse effects | Anti-Asthmatic Agents - therapeutic use | Humans | Drugs, Investigational - therapeutic use | Antineoplastic Agents - therapeutic use | Prodrugs - chemistry | Nonsteroidal Anti-Androgens - chemistry | Oligopeptides - therapeutic use | Nonsteroidal Anti-Androgens - therapeutic use | Sterols - adverse effects | Glycerol - analogs & derivatives | Porifera - chemistry | Benzhydryl Compounds - therapeutic use | Oligopeptides - chemistry | Anti-Asthmatic Agents - chemistry | Glycerol - therapeutic use | Indans - chemistry | Anti-Asthmatic Agents - pharmacology | Pyrrolidinones - adverse effects | Antimitotic Agents - adverse effects | Pyrrolidinones - therapeutic use | Antimitotic Agents - therapeutic use | Biological Products - isolation & purification | Biological Products - chemistry | Pyrrolidinones - isolation & purification | Cyclohexanols - therapeutic use | Oligopeptides - pharmacology | Anti-Asthmatic Agents - adverse effects | Cyclohexanols - adverse effects | Drugs, Investigational - adverse effects | Drugs, Investigational - pharmacology | Anti-Inflammatory Agents, Non-Steroidal - chemistry | Oligopeptides - adverse effects | Indans - therapeutic use | Benzhydryl Compounds - chemistry | Drugs, Investigational - chemistry | Sterols - therapeutic use | Benzhydryl Compounds - adverse effects | Antineoplastic Agents - adverse effects | Cyclohexanols - chemistry | Nonsteroidal Anti-Androgens - adverse effects | Drug Design | Antineoplastic Agents - pharmacology | Glycerol - pharmacology | Aquatic Organisms - chemistry | Nonsteroidal Anti-Androgens - pharmacology | Sterols - pharmacology | Sterols - chemistry | Antineoplastic Agents - chemistry | Drug Discovery | Pyrrolidinones - chemistry | Prodrugs - adverse effects | Animals | Anti-Inflammatory Agents, Non-Steroidal - adverse effects | Anti-Inflammatory Agents, Non-Steroidal - therapeutic use | Antimitotic Agents - pharmacology | Benzhydryl Compounds - pharmacology | Prodrugs - therapeutic use | Prodrugs - pharmacology | Antimitotic Agents - chemistry | Chemical oceanography | Index Medicus
Journal Article
Journal of Enzyme Inhibition and Medicinal Chemistry, ISSN 1475-6366, 01/2019, Volume 34, Issue 1, pp. 1226 - 1232
Journal Article
Journal of Pharmaceutical Sciences, ISSN 0022-3549, 08/2015, Volume 104, Issue 8, pp. 2457 - 2463
Journal Article
Journal Article
Journal Article
European Journal of Medicinal Chemistry, ISSN 0223-5234, 05/2008, Volume 43, Issue 5, pp. 986 - 995
Journal Article
Pharmaceutical Biology, ISSN 1388-0209, 01/2017, Volume 55, Issue 1, pp. 1561 - 1568
Context: To find bioactive medicinal herbs exerting anti-asthmatic activity, we investigated the effect of an aqueous extract of Urtica dioica L. (Urticaceae)... 
airway inflammation | polyphenols | Anti-asthmatic | nettle | oxidative stress | Polyphenols | Oxidative stress | Airway inflammation | Nettle | COMPLEX | ANTIOXIDANTS | OLIVE OILS | PLANT SCIENCES | MURINE MODEL | OFFICINALIS L | IN-VITRO | BETA-SITOSTEROL | PHARMACOLOGY & PHARMACY | MICE | MEDICAL LABORATORY TECHNOLOGY | EXTRACT | Phenols - isolation & purification | Plant Extracts - chemistry | Asthma - metabolism | Antioxidants - chemistry | Asthma - prevention & control | Rats, Wistar | Plant Extracts - pharmacology | Pulmonary Eosinophilia - chemically induced | Plant Leaves | Pneumonia - prevention & control | Male | Anti-Asthmatic Agents - isolation & purification | Pneumonia - chemically induced | Picrates - chemistry | Asthma - immunology | Lipid Peroxidation - drug effects | Pneumonia - immunology | Anti-Inflammatory Agents - isolation & purification | Lung - metabolism | Biphenyl Compounds - chemistry | Phytotherapy | Anti-Asthmatic Agents - chemistry | Disease Models, Animal | Phenols - pharmacology | Urtica dioica - chemistry | Anti-Asthmatic Agents - pharmacology | Ovalbumin | Pulmonary Eosinophilia - prevention & control | Pulmonary Eosinophilia - metabolism | Anti-Inflammatory Agents - pharmacology | Plant Extracts - isolation & purification | Antioxidants - pharmacology | Asthma - chemically induced | Animals | Anti-Inflammatory Agents - chemistry | Antioxidants - isolation & purification | Lung - drug effects | Oxidative Stress - drug effects | Pneumonia - metabolism | Lung - immunology | Plants, Medicinal | Lipid peroxidation | Inflammation | Rodents | Asthma | Index Medicus
Journal Article
Journal Article
Pharmaceutical Research, ISSN 0724-8741, 12/2017, Volume 34, Issue 12, pp. 2454 - 2465
To characterise a biorelevant simulated lung fluid (SLF) based on the composition of human respiratory tract lining fluid. SLF was compared to other media... 
Biochemistry, general | dissolution | biopharmaceutics | Biomedical Engineering | inhalation | Biomedicine | Pharmacy | fluticasone propionate | Medical Law | solubility | beclomethasone dipropionate | Pharmacology/Toxicology | aerosol | DRUG | SOLUBILIZATION | CHOLESTEROL | HUMAN INTESTINAL FLUIDS | CHEMISTRY, MULTIDISCIPLINARY | MONOLAYERS | PREDICTION | SURFACTANT | PHARMACOKINETICS | INHALER PRODUCTS | PHARMACOLOGY & PHARMACY | A549 Cells | Beclomethasone - administration & dosage | Fluticasone - chemistry | Beclomethasone - pharmacokinetics | Humans | Solubility | Administration, Inhalation | Asthma - drug therapy | Anti-Asthmatic Agents - pharmacokinetics | Body Fluids - metabolism | Fluticasone - administration & dosage | Fluticasone - pharmacokinetics | Lung - metabolism | Anti-Asthmatic Agents - administration & dosage | Beclomethasone - chemistry | Anti-Asthmatic Agents - chemistry | Beclomethasone dipropionate | Analysis | Fluticasone | Cell culture | Spectroscopy | Media (culture) | Epithelial cells | Propionic acid | Photon correlation spectroscopy | Electron microscopy | Dissolution | Inhalation | Respiratory tract | Transmission electron microscopy | Lungs | Biocompatibility | Alveoli | Respiration | Pharmaceuticals | Research Paper | Fysikalisk kemi | Chemical Sciences | Naturvetenskap | Physical Chemistry | Kemi | Natural Sciences
Journal Article