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1-ethyl-2-benzimidazolinone and barium

1-ethyl-2-benzimidazolinone has been researched along with barium in 6 studies

Research

Studies (6)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's6 (100.00)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Van de Voorde, J; Vanheel, B1
Coleman, HA; Parkington, HC; Tare, M1
Cuthbert, AW; Duszyk, M; MacVinish, L1
Cowley, EA; Linsdell, P1
Gargus, JJ; Grissmer, S; Imtiaz, F; Lehmann-Horn, F; Morris-Rosendahl, DJ; Tomita, H; Visan, V; Wittekindt, OH1
Dutta, AK; Esser, V; Feranchak, AP; Khimji, AK; Kresge, C; Parameswara, V; Rockey, DC; Sathe, M1

Other Studies

6 other study(ies) available for 1-ethyl-2-benzimidazolinone and barium

ArticleYear
EDHF-mediated relaxation in rat gastric small arteries: influence of ouabain/Ba2+ and relation to potassium ions.
    Journal of cardiovascular pharmacology, 2000, Volume: 35, Issue:4

    Topics: Animals; Arteries; Barium; Benzimidazoles; Biological Factors; Calcium Channel Agonists; Cardiotonic Agents; Drug Interactions; Female; In Vitro Techniques; Membrane Potentials; Ouabain; Potassium; Potassium Channel Blockers; Potassium Channels, Inwardly Rectifying; Rats; Rats, Wistar; Sodium-Potassium-Exchanging ATPase; Stomach; Vasodilation

2000
EDHF is not K+ but may be due to spread of current from the endothelium in guinea pig arterioles.
    American journal of physiology. Heart and circulatory physiology, 2001, Volume: 280, Issue:6

    Topics: Acetylcholine; Animals; Arterioles; Barium; Benzimidazoles; Biological Factors; Calcium; Calcium Channel Agonists; Charybdotoxin; Endothelium, Vascular; Enzyme Inhibitors; Guinea Pigs; In Vitro Techniques; Intestine, Small; Membrane Potentials; Microelectrodes; Muscle, Smooth, Vascular; Patch-Clamp Techniques; Peptides; Potassium; Substance P; Vasodilation

2001
Phenanthrolines--a new class of CFTR chloride channel openers.
    British journal of pharmacology, 2001, Volume: 134, Issue:4

    Topics: 1-Methyl-3-isobutylxanthine; Amiloride; Animals; Anthracenes; Barium; Benzimidazoles; Calcium; Charybdotoxin; Chloride Channels; Chlorides; Colon; Cyclic CMP; Cystic Fibrosis Transmembrane Conductance Regulator; Dose-Response Relationship, Drug; Epithelium; In Vitro Techniques; Intestinal Mucosa; Membrane Potentials; Mice; Mice, Inbred BALB C; Phenanthrolines; Potassium Channels; Quinolines; Respiratory Mucosa; Stereoisomerism

2001
Characterization of basolateral K+ channels underlying anion secretion in the human airway cell line Calu-3.
    The Journal of physiology, 2002, Feb-01, Volume: 538, Issue:Pt 3

    Topics: Anions; Barium; Benzimidazoles; Calcium Channel Agonists; Clotrimazole; Cyclic AMP; Electric Conductivity; Enzyme Inhibitors; Humans; Ions; Lung; Potassium Channel Blockers; Potassium Channels; Protein Isoforms; Quaternary Ammonium Compounds; Serous Membrane; Thapsigargin; Tumor Cells, Cultured

2002
An apamin- and scyllatoxin-insensitive isoform of the human SK3 channel.
    Molecular pharmacology, 2004, Volume: 65, Issue:3

    Topics: Alternative Splicing; Apamin; Barium; Benzimidazoles; Calcium; Humans; Potassium Channels; Potassium Channels, Calcium-Activated; Protein Isoforms; Reverse Transcriptase Polymerase Chain Reaction; Scorpion Venoms; Small-Conductance Calcium-Activated Potassium Channels; Tetraethylammonium; Tubocurarine

2004
Identification and functional characterization of the intermediate-conductance Ca(2+)-activated K(+) channel (IK-1) in biliary epithelium.
    American journal of physiology. Gastrointestinal and liver physiology, 2009, Volume: 297, Issue:5

    Topics: Adenosine Triphosphate; Animals; Apamin; Barium; Benzimidazoles; Biliary Tract; Buffers; Cell Line, Tumor; Cell Membrane; Cells, Cultured; Chelating Agents; Clotrimazole; Egtazic Acid; Electrophysiological Phenomena; Epithelial Cells; Gene Expression; Humans; Inositol 1,4,5-Trisphosphate Receptors; Intermediate-Conductance Calcium-Activated Potassium Channels; Models, Biological; Patch-Clamp Techniques; Purinergic P2 Receptor Antagonists; Pyrazoles; Rats; Signal Transduction; Suramin

2009