Page last updated: 2024-08-16

w 7 and quinine

w 7 has been researched along with quinine in 7 studies

Research

Studies (7)

TimeframeStudies, this research(%)All Research%
pre-19903 (42.86)18.7374
1990's2 (28.57)18.2507
2000's2 (28.57)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Kozyrev, SA; Nikitin, VP; Samoĭlov, MO1
Mitsumoto, Y; Mohri, T; Sato, K1
Bregestosvski, PD; Serebryakov, VN; Stinnakre, J; Zamoyski, VL1
Bunker, CH; Day, BW; Hopp, L1
Farahbakhsh, NA; Narins, PM1
Creveling, CR; Daly, JW; Lewandowski, GA; McNeal, ET1
Austin, CP; Fidock, DA; Hayton, K; Huang, R; Inglese, J; Jiang, H; Johnson, RL; Su, XZ; Wellems, TE; Wichterman, J; Yuan, J1

Other Studies

7 other study(ies) available for w 7 and quinine

ArticleYear
[Participation of calcium and calmodulin in mechanisms of sensitizing Helix snails].
    Doklady Akademii nauk SSSR, 1991, Volume: 320, Issue:1

    Topics: Animals; Behavior, Animal; Calcium; Calmodulin; Fluorescent Dyes; Helix, Snails; Neurons; Quinine; Second Messenger Systems; Sulfonamides

1991
Possible participation of calmodulin in stimulation of leucine transport by concanavalin A in human lymphocytes.
    Biochemical and biophysical research communications, 1988, Jun-16, Volume: 153, Issue:2

    Topics: Calcimycin; Calcium; Calmodulin; Chlorpromazine; Concanavalin A; Diazepam; Humans; In Vitro Techniques; Ion Channels; Leucine; Lymphocyte Activation; Lymphocytes; Membrane Potentials; Potassium; Quinine; Sulfonamides

1988
Effects of quinine and of calmodulin inhibitors on calcium-dependent potassium channels of human aorta.
    Pflugers Archiv : European journal of physiology, 1989, Volume: 414 Suppl 1

    Topics: Aorta; Calcium; Calmodulin; Cells, Cultured; Humans; Muscle, Smooth, Vascular; Nicardipine; Potassium Channels; Quinine; Sulfonamides; Trifluoperazine

1989
Quinine sensitive changes in cellular Na+ and K+ homeostasis of COS-7 cells caused by a lipophilic phenol red impurity.
    In vitro cellular & developmental biology. Animal, 1995, Volume: 31, Issue:5

    Topics: Animals; Cell Line; Cells, Cultured; Drug Contamination; Gallic Acid; Homeostasis; Humans; Ion Channels; Phenolphthalein; Phenolphthaleins; Phenolsulfonphthalein; Potassium; Quinidine; Quinine; Sodium; Sulfonamides

1995
Slow motility in hair cells of the frog amphibian papilla: Ca2+-dependent shape changes.
    Hearing research, 2006, Volume: 212, Issue:1-2

    Topics: Animals; Calcium; Calmodulin; Enzyme Inhibitors; Furosemide; Hair Cells, Auditory; Ionomycin; Ionophores; Membrane Potentials; Movement; Organ of Corti; Potassium Channel Blockers; Quinine; Rana pipiens; Sodium Potassium Chloride Symporter Inhibitors; Sulfonamides

2006
[3H]Batrachotoxinin A 20 alpha-benzoate binding to voltage-sensitive sodium channels: a rapid and quantitative assay for local anesthetic activity in a variety of drugs.
    Journal of medicinal chemistry, 1985, Volume: 28, Issue:3

    Topics: Adrenergic alpha-Antagonists; Adrenergic beta-Antagonists; Anesthetics, Local; Animals; Batrachotoxins; Calcium Channel Blockers; Cyclic AMP; Guinea Pigs; Histamine H1 Antagonists; In Vitro Techniques; Ion Channels; Neurotoxins; Sodium; Tranquilizing Agents; Tritium

1985
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
    Nature chemical biology, 2009, Volume: 5, Issue:10

    Topics: Animals; Antimalarials; ATP Binding Cassette Transporter, Subfamily B, Member 1; Chromosome Mapping; Crosses, Genetic; Dihydroergotamine; Drug Design; Drug Resistance; Humans; Inhibitory Concentration 50; Mutation; Plasmodium falciparum; Quantitative Trait Loci; Transfection

2009