quinacrine and cycloheximide

quinacrine has been researched along with cycloheximide in 22 studies

Research

Studies (22)

TimeframeStudies, this research(%)All Research%
pre-199011 (50.00)18.7374
1990's3 (13.64)18.2507
2000's7 (31.82)29.6817
2010's1 (4.55)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Bellows, DS; Clarke, ID; Diamandis, P; Dirks, PB; Graham, J; Jamieson, LG; Ling, EK; Sacher, AG; Tyers, M; Ward, RJ; Wildenhain, J1
Bleich, S; Gulbins, E; Kornhuber, J; Reichel, M; Terfloth, L; Tripal, P; Wiltfang, J1
Adrián, F; Anderson, P; Brinker, A; Caldwell, JS; Chatterjee, A; Gray, NS; Henson, K; Janes, J; Kato, N; Kuhen, K; Matzen, JT; McNamara, C; Nagle, A; Nam, TG; Plouffe, D; Schultz, PG; Trager, R; Winzeler, EA; Yan, SF; Zhou, Y1
González-Díaz, H; Orallo, F; Quezada, E; Santana, L; Uriarte, E; Viña, D; Yáñez, M1
Barnes, SW; Bonamy, GM; Bopp, SE; Borboa, R; Bright, AT; Chatterjee, A; Che, J; Cohen, S; Dharia, NV; Diagana, TT; Fidock, DA; Froissard, P; Gagaring, K; Gettayacamin, M; Glynne, RJ; Gordon, P; Groessl, T; Kato, N; Kuhen, KL; Lee, MC; Mazier, D; McNamara, CW; Meister, S; Nagle, A; Nam, TG; Plouffe, DM; Richmond, W; Roland, J; Rottmann, M; Sattabongkot, J; Schultz, PG; Tuntland, T; Walker, JR; Winzeler, EA; Wu, T; Zhou, B; Zhou, Y1
Gláz, ET; Tálas, M1
Green, K; Recasens, JF1
Bortolotti, F; Chiozzi, P; Gavioli, R; Lanza, F; Spisani, S; Traniello, S1
Rommerts, FF; Terpstra, P; van der Molen, HJ1
Komuniecki, PR; Whitten, JJ1
Meneghini, R1
Chou, SC; Conklin, KA2
Carchman, R; Ceccarini, C; Hirschberg, E; Osnos, M1
Nichol, AW1
Vadas, P1
Brown, CA; Zusman, RM1
Johnson, MS; Mitchell, R; Thomson, FJ; Wolbers, B1
Mitchell, R; Thomson, FJ1
Aoyama, M; Asai, K; Kato, T; Miura, Y; Miyachi, T; Mizuno, H; Togari, H; Tsuiki, H; Wada, Y; Yamamoto, N; Yokoi, T1
Benevides, C; Fonteles, MC; Havt, A; Lima, AA; Martins, AM; Monteiro, HS; Nobre, AC1
Emerson, LR; Kuchler, K; Skillman, BC; Wirth, DF; Wolfger, H1

Other Studies

22 other study(ies) available for quinacrine and cycloheximide

ArticleYear
Chemical genetics reveals a complex functional ground state of neural stem cells.
    Nature chemical biology, 2007, Volume: 3, Issue:5

    Topics: Animals; Cell Survival; Cells, Cultured; Mice; Molecular Structure; Neoplasms; Neurons; Pharmaceutical Preparations; Sensitivity and Specificity; Stem Cells

2007
Identification of new functional inhibitors of acid sphingomyelinase using a structure-property-activity relation model.
    Journal of medicinal chemistry, 2008, Jan-24, Volume: 51, Issue:2

    Topics: Algorithms; Animals; Cell Line; Cell Line, Tumor; Chemical Phenomena; Chemistry, Physical; Enzyme Inhibitors; Humans; Hydrogen-Ion Concentration; Molecular Conformation; Quantitative Structure-Activity Relationship; Rats; Sphingomyelin Phosphodiesterase

2008
In silico activity profiling reveals the mechanism of action of antimalarials discovered in a high-throughput screen.
    Proceedings of the National Academy of Sciences of the United States of America, 2008, Jul-01, Volume: 105, Issue:26

    Topics: Animals; Antimalarials; Cluster Analysis; Computational Biology; Drug Evaluation, Preclinical; Drug Resistance; Folic Acid Antagonists; Malaria; Models, Molecular; Parasites; Plasmodium falciparum; Reproducibility of Results; Structure-Activity Relationship; Tetrahydrofolate Dehydrogenase

2008
Quantitative structure-activity relationship and complex network approach to monoamine oxidase A and B inhibitors.
    Journal of medicinal chemistry, 2008, Nov-13, Volume: 51, Issue:21

    Topics: Computational Biology; Drug Design; Humans; Isoenzymes; Molecular Structure; Monoamine Oxidase; Monoamine Oxidase Inhibitors; Quantitative Structure-Activity Relationship

2008
Imaging of Plasmodium liver stages to drive next-generation antimalarial drug discovery.
    Science (New York, N.Y.), 2011, Dec-09, Volume: 334, Issue:6061

    Topics: Animals; Antimalarials; Cell Line, Tumor; Drug Discovery; Drug Evaluation, Preclinical; Drug Resistance; Erythrocytes; Humans; Imidazoles; Liver; Malaria; Mice; Mice, Inbred BALB C; Molecular Structure; Piperazines; Plasmodium; Plasmodium berghei; Plasmodium falciparum; Plasmodium yoelii; Polymorphism, Single Nucleotide; Protozoan Proteins; Random Allocation; Small Molecule Libraries; Sporozoites

2011
Comparison of the ability of small molecular interferon inducers: tilorone and acridine drugs.
    Archives of virology, 1975, Volume: 48, Issue:4

    Topics: Acridines; Aminacrine; Animals; Body Temperature; Chick Embryo; Chickens; Culture Techniques; Cycloheximide; Dactinomycin; Female; Fluorenes; Interferon Inducers; Interferons; Male; Mice; Propanolamines; Quinacrine; Rabbits; Tilorone; Vaccinia virus

1975
Effects of endotoxin and anti-inflammatory agents on superoxide dismutase in the rabbit iris.
    Ophthalmic research, 1990, Volume: 22, Issue:1

    Topics: Animals; Anti-Inflammatory Agents; Cycloheximide; Dexamethasone; Endotoxins; Enzyme Induction; Indomethacin; Iris; Masoprocol; Pregnenediones; Quinacrine; Rabbits; Superoxide Dismutase

1990
Lymphocytes treated with natural alfa-interferon produce a chemotactic factor for human neutrophils.
    Cell biology international reports, 1989, Volume: 13, Issue:2

    Topics: Cells, Cultured; Chemotactic Factors; Chemotaxis, Leukocyte; Culture Media; Cycloheximide; Humans; Interferon Type I; Interleukin-8; Lymphocytes; Neutrophils; Quinacrine; Recombinant Proteins

1989
Are polyphosphorylated phospholipids involved in the hormonal control of cholesterol side-chain cleavage activity in tumour Leydig cells?
    Journal of steroid biochemistry, 1985, Volume: 22, Issue:6

    Topics: Animals; Bucladesine; Cardiolipins; Cycloheximide; Cytochrome P-450 Enzyme System; Leydig Cell Tumor; Leydig Cells; Luteinizing Hormone; Male; Mitochondria; Phosphatidylethanolamines; Phosphatidylinositol 4,5-Diphosphate; Phosphatidylinositol Phosphates; Phosphatidylinositols; Phospholipids; Pregnenolone; Quinacrine

1985
Brugia pahangi: inhibition of protein synthesis.
    Experimental parasitology, 1987, Volume: 64, Issue:2

    Topics: Animals; Antimycin A; Brugia; Chloramphenicol; Chloroquine; Cyanides; Cycloheximide; Electron Transport; Lactates; Molecular Weight; Movement; Protein Biosynthesis; Protein Synthesis Inhibitors; Quinacrine

1987
Repair replication of opossum lymphocyte DNA: effect of compounds that bind to DNA.
    Chemico-biological interactions, 1974, Volume: 8, Issue:2

    Topics: Acridines; Alkylating Agents; Animals; Autoradiography; Binding Sites; Bromodeoxyuridine; Centrifugation, Density Gradient; Cycloheximide; Dactinomycin; DNA Repair; DNA Replication; Hydroxyurea; Kinetics; Lymphocytes; Mesylates; Opossums; Quinacrine; Radiation Effects; Thymidine; Tritium; Ultraviolet Rays

1974
The effects of antimalarial drugs on uptake and incorporation of macromolecular precursors by Tetrahymena pyriformis.
    The Journal of pharmacology and experimental therapeutics, 1972, Volume: 180, Issue:1

    Topics: Amino Acids; Animals; Antimalarials; Carbon Isotopes; Cell Division; Chloroquine; Cycloheximide; Dactinomycin; DNA; Kinetics; Macromolecular Substances; Nalidixic Acid; Primaquine; Quinacrine; Quinine; RNA; Tetrahymena pyriformis; Thymidine; Uridine

1972
Effects of inhibitors of nucleic acid and protein synthesis on growth and aggregation of the cellular slime mold Dictyostelium discoideum.
    Proceedings of the National Academy of Sciences of the United States of America, 1968, Volume: 61, Issue:1

    Topics: Carbon Isotopes; Coliphages; Cycloheximide; Dactinomycin; Escherichia coli; Fungi; Lucanthone; Protein Biosynthesis; Puromycin; Quinacrine; RNA; RNA, Messenger; Uridine

1968
The formation of biliverdin by chicken macrophages in tissue culture. Observations on the effect of inhibitors.
    Biochimica et biophysica acta, 1970, Oct-27, Volume: 222, Issue:1

    Topics: Acetanilides; Animals; Ascorbic Acid; Azides; Bile Pigments; Carbon Monoxide; Chickens; Chloramphenicol; Culture Techniques; Cyanides; Cycloheximide; Dactinomycin; Erythrocytes; Ethylmaleimide; Female; Heme; Hydrogen Peroxide; Macrophages; Metabolism; Microscopy, Phase-Contrast; Mitomycins; Phagocytosis; Phenobarbital; Proadifen; Quinacrine; Spectrophotometry; Spectrum Analysis; Stimulation, Chemical; Triazoles

1970
Antimalarials: effects on in vivo and in vitro protein synthesis.
    Science (New York, N.Y.), 1970, Dec-11, Volume: 170, Issue:3963

    Topics: Amino Acids; Antimalarials; Carbon Isotopes; Cell-Free System; Chloroquine; Cycloheximide; Primaquine; Protein Biosynthesis; Quinacrine; Quinine; Tetrahymena

1970
The efficacy of anti-inflammatory agents with respect to extracellular phospholipase A2 activity.
    Life sciences, 1982, Jan-11, Volume: 30, Issue:2

    Topics: Animals; Anti-Inflammatory Agents; Cycloheximide; Dexamethasone; Enzyme Activation; Indomethacin; Phospholipases; Phospholipases A; Phospholipases A2; Quinacrine; Rabbits

1982
Role of phospholipase in the regulation of prostaglandin E2 biosynthesis by rabbit renomedullary interstitial cells in tissue culture: effects of angiotensin II, potassium, hyperosmolality, dexamethasone, and protein synthesis inhibition.
    Advances in prostaglandin and thromboxane research, 1980, Volume: 6

    Topics: Angiotensin II; Animals; Cycloheximide; Dexamethasone; Indomethacin; Kidney Medulla; Kinetics; Osmolar Concentration; Phospholipases; Potassium; Prostaglandins E; Quinacrine; Rabbits

1980
Evidence for a role of phospholipase A2 in the mechanism of LHRH priming in rat anterior pituitary tissue.
    The Journal of endocrinology, 1994, Volume: 141, Issue:1

    Topics: Acetophenones; Aminobenzoates; Animals; Arachidonic Acid; Aristolochic Acids; Calcium; Chlorobenzoates; Cinnamates; Cycloheximide; Female; Gonadotropin-Releasing Hormone; In Vitro Techniques; Luteinizing Hormone; ortho-Aminobenzoates; Phenanthrenes; Phenothiazines; Phospholipases A; Phospholipases A2; Pituitary Gland, Anterior; Proestrus; Quinacrine; Rats; Rats, Wistar

1994
Differential involvement of phospholipase A2 in phorbol ester-induced luteinizing hormone and growth hormone release from rat anterior pituitary tissue.
    Molecular and cellular endocrinology, 1993, Volume: 95, Issue:1-2

    Topics: 1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine; Alkaloids; Aminobenzoates; Animals; Arachidonic Acid; Aristolochic Acids; Chlorobenzoates; Cinnamates; Cyclohexanones; Cycloheximide; Enzyme Activation; Female; Growth Hormone; Indoles; Ionomycin; Isoquinolines; Luteinizing Hormone; Melitten; ortho-Aminobenzoates; Phenanthrenes; Phenothiazines; Phorbol 12,13-Dibutyrate; Phospholipases A; Phospholipases A2; Piperazines; Pituitary Gland, Anterior; Proestrus; Protein Kinase C; Quinacrine; Rats; Rats, Wistar; Signal Transduction; Staurosporine

1993
Interleukin-1beta induces the expression of lipocortin 1 mRNA in cultured rat cortical astrocytes.
    Neuroscience research, 2001, Volume: 40, Issue:1

    Topics: Animals; Annexin A1; Antibodies; Astrocytes; Brain Injuries; Cell Survival; Cells, Cultured; Cerebral Cortex; Cycloheximide; Dose-Response Relationship, Drug; Encephalitis; Enzyme Inhibitors; Fetus; Interleukin-1; MAP Kinase Signaling System; Nerve Degeneration; Neuroprotective Agents; Protein Synthesis Inhibitors; Quinacrine; Rats; Rats, Wistar; RNA, Messenger; Time Factors

2001
Renal effects of supernatant from rat peritoneal macrophages activated by microcystin-LR: role protein mediators.
    Toxicon : official journal of the International Society on Toxinology, 2003, Mar-01, Volume: 41, Issue:3

    Topics: Animals; Culture Media, Conditioned; Cycloheximide; Dexamethasone; Drug Combinations; Female; Kidney; Macrophages, Peritoneal; Male; Marine Toxins; Microcystins; Peptides, Cyclic; Perfusion; Quinacrine; Rats; Rats, Wistar; Thalidomide; Vascular Resistance

2003
The sensitivities of yeast strains deficient in PDR ABC transporters, to quinoline-ring antimalarial drugs.
    Annals of tropical medicine and parasitology, 2004, Volume: 98, Issue:6

    Topics: Antimalarials; ATP-Binding Cassette Transporters; Chloroquine; Cycloheximide; Drug Resistance, Multiple, Fungal; Gene Deletion; Genes, Fungal; Mefloquine; Mutation; Quinacrine; Quinidine; Quinine; Saccharomyces cerevisiae; Transcription, Genetic

2004