acetylcysteine has been researched along with citric acid, anhydrous in 10 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 3 (30.00) | 18.7374 |
1990's | 1 (10.00) | 18.2507 |
2000's | 2 (20.00) | 29.6817 |
2010's | 4 (40.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Barnes, JC; Bradley, P; Day, NC; Fourches, D; Reed, JZ; Tropsha, A | 1 |
Bravo-Díaz, C; Losada-Barreiro, S | 1 |
Binderman, I; Itzkowitz, D; Kaufman, A; Sperling, I | 1 |
Jacobs, D; Marion, D; Reckler, J; Rodman, JS; Rotterdam, H; Vaughan, ED | 1 |
Nicolaro, ML; Paterson, CA; Pfister, RR | 1 |
Costa-Bauzá, A; Grases, F; Ramis, M; Villacampa, AI | 1 |
Carmona, A; Martin-Belloso, O; Ramírez, J; Rodríguez, FJ; Rojas-Graü, MA; Tapia, MS | 1 |
Bartos, V; Brozmanova, M; Javorka, M; Masar, J; Plank, L; Plevkova, J; Tatar, M | 1 |
Baldwin, EA; Narciso, JA; Plotto, A; Rattanapanone, N | 1 |
Chen, LC; Chiueh, CC; Hsu, C; Lee, WS | 1 |
1 review(s) available for acetylcysteine and citric acid, anhydrous
Article | Year |
---|---|
Free radicals and polyphenols: The redox chemistry of neurodegenerative diseases.
Topics: Animals; Free Radicals; Humans; Neurodegenerative Diseases; Oxidation-Reduction; Oxidative Stress; Polyphenols; Reactive Oxygen Species | 2017 |
9 other study(ies) available for acetylcysteine and citric acid, anhydrous
Article | Year |
---|---|
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
Topics: Animals; Chemical and Drug Induced Liver Injury; Cluster Analysis; Databases, Factual; Humans; MEDLINE; Mice; Models, Chemical; Molecular Conformation; Quantitative Structure-Activity Relationship | 2010 |
A new treatment of heterotransplanted teeth to prevent progression of root resorption.
Topics: Acetylcysteine; Citrates; Citric Acid; Humans; Methods; Root Canal Therapy; Root Resorption; Tissue Preservation; Tooth | 1986 |
Urothelial injury to the rabbit bladder from various alkaline and acidic solutions used to dissolve kidney stones.
Topics: Acetylcysteine; Acids; Animals; Citrates; Citric Acid; Creatinine; Dogs; Epithelium; Kidney Calculi; Rabbits; Sodium Chloride; Urinary Bladder Diseases | 1986 |
Sodium citrate reduces the incidence of corneal ulcerations and perforations in extreme alkali-burned eyes--acetylcysteine and ascorbate have no favorable effect.
Topics: Acetylcysteine; Administration, Topical; Alkalies; Animals; Ascorbic Acid; Burns, Chemical; Citrates; Citric Acid; Corneal Ulcer; Eye Burns; Rabbits | 1981 |
Uric acid urolithiasis and crystallization inhibitors.
Topics: Acetylcysteine; Citric Acid; Crystallization; Glycosaminoglycans; Humans; Mucins; Phytic Acid; Saponins; Sodium Dodecyl Sulfate; Surface-Active Agents; Uric Acid; Urinary Calculi | 1999 |
Alginate- and gellan-based edible films for probiotic coatings on fresh-cut fruits.
Topics: Acetylcysteine; Alginates; Anti-Bacterial Agents; Ascorbic Acid; Bifidobacterium; Carica; Citric Acid; Feasibility Studies; Food Handling; Food Preservation; Fruit; Glucuronic Acid; Glycerol; Hexuronic Acids; Malus; Permeability; Plant Oils; Polysaccharides, Bacterial; Probiotics; Refrigeration; Solubility; Sunflower Oil; Surface Properties; Volatilization; Water | 2007 |
Oral N-acetylcysteine reverses hyperoxia-related cough suppression in guinea pigs.
Topics: Acetylcysteine; Administration, Oral; Animals; Antioxidants; Citric Acid; Cough; Disease Models, Animal; Guinea Pigs; Hyperoxia; Lung; Lung Diseases; Male; Oxidative Stress; Physical Stimulation; Reflex | 2007 |
Surface treatments and coatings to maintain fresh-cut mango quality in storage.
Topics: Acetylcysteine; Ascorbic Acid; Carboxymethylcellulose Sodium; Carrageenan; Chemical Phenomena; Chitosan; Citric Acid; Food Handling; Food Microbiology; Food Preservation; Food Preservatives; Fruit; Humans; Hydrogen-Ion Concentration; Maillard Reaction; Mangifera; Pigmentation; Quality Control; Sensation; Time Factors | 2010 |
Ferrous citrate up-regulates the NOS2 through nuclear translocation of NFκB induced by free radicals generation in mouse cerebral endothelial cells.
Topics: Acetylcysteine; Animals; Binding Sites; Cell Nucleus; Cells, Cultured; Cerebral Cortex; Citric Acid; Endothelial Cells; Endothelium, Vascular; Ferrous Compounds; Free Radical Scavengers; Free Radicals; Male; Mice; NF-kappa B; Nitric Oxide Synthase Type II; Promoter Regions, Genetic; Protein Binding; Protein Transport; RNA, Messenger; Transcription, Genetic; Up-Regulation | 2012 |