dactinomycin has been researched along with albuterol in 8 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (12.50) | 18.7374 |
1990's | 3 (37.50) | 18.2507 |
2000's | 1 (12.50) | 29.6817 |
2010's | 2 (25.00) | 24.3611 |
2020's | 1 (12.50) | 2.80 |
Authors | Studies |
---|---|
Benz, RD; Contrera, JF; Kruhlak, NL; Matthews, EJ; Weaver, JL | 1 |
Barnes, JC; Bradley, P; Day, NC; Fourches, D; Reed, JZ; Tropsha, A | 1 |
Chen, M; Hu, C; Suzuki, A; Thakkar, S; Tong, W; Yu, K | 1 |
Cieslinski, LB; Torphy, TJ; Zhou, HL | 1 |
Lew, DB; Malik, KU; Nadel, GL | 1 |
Märki, F; Pfeilschifter, J; Pignat, W; Wiesenberg, I | 1 |
Barnes, PJ; Giembycz, MA; Meja, K; Seldon, PM | 1 |
Carbajal-García, A; Casas-Hernández, MF; Díaz-Hernández, V; Flores-Soto, E; Montaño, LM; Reyes-García, J; Solís-Chagoyán, H; Sommer, B | 1 |
1 review(s) available for dactinomycin and albuterol
Article | Year |
---|---|
DILIrank: the largest reference drug list ranked by the risk for developing drug-induced liver injury in humans.
Topics: Chemical and Drug Induced Liver Injury; Databases, Factual; Drug Labeling; Humans; Pharmaceutical Preparations; Risk | 2016 |
7 other study(ies) available for dactinomycin and albuterol
Article | Year |
---|---|
Assessment of the health effects of chemicals in humans: II. Construction of an adverse effects database for QSAR modeling.
Topics: Adverse Drug Reaction Reporting Systems; Artificial Intelligence; Computers; Databases, Factual; Drug Prescriptions; Drug-Related Side Effects and Adverse Reactions; Endpoint Determination; Models, Molecular; Quantitative Structure-Activity Relationship; Software; United States; United States Food and Drug Administration | 2004 |
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 |
Stimulation of beta adrenoceptors in a human monocyte cell line (U937) up-regulates cyclic AMP-specific phosphodiesterase activity.
Topics: 3',5'-Cyclic-AMP Phosphodiesterases; Albuterol; Cyclic AMP; Cycloheximide; Dactinomycin; Dinoprostone; Dose-Response Relationship, Drug; Humans; Leukemia, Myeloid; Monocytes; Protein Kinases; Pyrrolidinones; Receptors, Adrenergic, beta; Rolipram; Tumor Cells, Cultured; Up-Regulation | 1992 |
Prostaglandin E2 synthesis elicited by adrenergic stimuli in guinea pig trachea is mediated primarily via activation of beta 2 adrenergic receptors.
Topics: Albuterol; Animals; Arachidonic Acid; Butoxamine; Colforsin; Cyclic AMP; Cycloheximide; Dactinomycin; Dinoprostone; Dobutamine; Guinea Pigs; In Vitro Techniques; Isoproterenol; Male; Practolol; Receptors, Adrenergic, beta; Time Factors; Trachea | 1992 |
Release of phospholipase A2 activity from rat vascular smooth muscle cells mediated by cAMP.
Topics: Albuterol; Angiotensin II; Animals; Aorta; Cells, Cultured; Cholera Toxin; Colforsin; Cyclic AMP; Cycloheximide; Dactinomycin; Inositol Phosphates; Kinetics; Muscle, Smooth, Vascular; Phospholipases; Phospholipases A; Phospholipases A2; Rats | 1989 |
Suppression of lipopolysaccharide-induced tumor necrosis factor-alpha generation from human peripheral blood monocytes by inhibitors of phosphodiesterase 4: interaction with stimulants of adenylyl cyclase.
Topics: 3',5'-Cyclic-AMP Phosphodiesterases; Adenylyl Cyclases; Albuterol; Amino Acid Sequence; Atrial Natriuretic Factor; Colforsin; Cyclic AMP; Cyclic AMP-Dependent Protein Kinases; Cyclic Nucleotide Phosphodiesterases, Type 4; Cycloheximide; Dactinomycin; Dexamethasone; Dinoprostone; Drug Interactions; Flurbiprofen; Humans; Isoenzymes; Leukocytes, Mononuclear; Lipopolysaccharides; Molecular Sequence Data; Nitroprusside; Phosphodiesterase Inhibitors; Phosphoric Diester Hydrolases; Pyrrolidinones; Rolipram; Stimulation, Chemical; Time Factors; Tumor Necrosis Factor-alpha | 1995 |
Testosterone augments β
Topics: Albuterol; Animals; Cycloheximide; Dactinomycin; Genome; Guinea Pigs; Lung; Male; Muscle Cells; Muscle Relaxation; Muscle, Smooth; Potassium Channels; Propanolamines; Receptors, Adrenergic, beta-2; Testosterone; Trachea; Transcription, Genetic; Up-Regulation | 2020 |