Page last updated: 2024-09-04

levofloxacin and ibuprofen

levofloxacin has been researched along with ibuprofen in 16 studies

Compound Research Comparison

Studies
(levofloxacin)
Trials
(levofloxacin)
Recent Studies (post-2010)
(levofloxacin)
Studies
(ibuprofen)
Trials
(ibuprofen)
Recent Studies (post-2010) (ibuprofen)
4,3465812,20910,2451,7814,267

Protein Interaction Comparison

ProteinTaxonomylevofloxacin (IC50)ibuprofen (IC50)
Prostaglandin G/H synthase 1 Bos taurus (cattle)2.9
Prostaglandin G/H synthase 2 Bos taurus (cattle)1.1
AlbuminBos taurus (cattle)3
Prostaglandin G/H synthase 1Ovis aries (sheep)4.0919
Prostaglandin G/H synthase 1Mus musculus (house mouse)0.22
Prostaglandin G/H synthase 1Homo sapiens (human)1.6273
Caspase-1Homo sapiens (human)7.2667
Substance-P receptorCavia porcellus (domestic guinea pig)1.1
Prostaglandin G/H synthase 2Homo sapiens (human)3.0687
Prostaglandin G/H synthase 2 Rattus norvegicus (Norway rat)1.3
Aldo-keto reductase family 1 member C3Homo sapiens (human)10
Caspase-3Homo sapiens (human)7.2667
Caspase-4Homo sapiens (human)7.2667
4-aminobutyrate aminotransferase, mitochondrialRattus norvegicus (Norway rat)1.1
Caspase-5Homo sapiens (human)7.2667
Caspase-9Homo sapiens (human)7.2667
Prostaglandin G/H synthase 2Ovis aries (sheep)1.1375
Mu-type opioid receptorCavia porcellus (domestic guinea pig)2.9
Fatty-acid amide hydrolase 1Rattus norvegicus (Norway rat)5
Prostaglandin G/H synthase 2Mus musculus (house mouse)0.54
Solute carrier family 22 member 6Homo sapiens (human)8
Prostaglandin G/H synthase 1 Rattus norvegicus (Norway rat)1.3

Research

Studies (16)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's4 (25.00)29.6817
2010's11 (68.75)24.3611
2020's1 (6.25)2.80

Authors

AuthorsStudies
Benz, RD; Contrera, JF; Kruhlak, NL; Matthews, EJ; Weaver, JL1
Lombardo, F; Obach, RS; Waters, NJ1
Chupka, J; El-Kattan, A; Feng, B; Miller, HR; Obach, RS; Troutman, MD; Varma, MV1
Chen, L; He, Z; Li, H; Liu, J; Liu, X; Sui, X; Sun, J; Wang, Y; Zhang, W1
Barnes, JC; Bradley, P; Day, NC; Fourches, D; Reed, JZ; Tropsha, A1
Chang, G; El-Kattan, A; Miller, HR; Obach, RS; Rotter, C; Steyn, SJ; Troutman, MD; Varma, MV1
Fisk, L; Greene, N; Naven, RT; Note, RR; Patel, ML; Pelletier, DJ1
Ekins, S; Williams, AJ; Xu, JJ1
Barber, J; Dawson, S; Kenna, JG; Paul, N; Stahl, S1
Ambroso, JL; Ayrton, AD; Baines, IA; Bloomer, JC; Chen, L; Clarke, SE; Ellens, HM; Harrell, AW; Lovatt, CA; Reese, MJ; Sakatis, MZ; Taylor, MA; Yang, EY1
Cantin, LD; Chen, H; Kenna, JG; Noeske, T; Stahl, S; Walker, CL; Warner, DJ1
Bellman, K; Knegtel, RM; Settimo, L1
Chen, M; Hu, C; Suzuki, A; Thakkar, S; Tong, W; Yu, K1
del Carmen Ponte, M; del Prado, G; Naves, P; Rodríguez-Cerrato, V; Ruiz, V; Soriano, F1
Bond, AM; Flynn, D; Keyes, TE; MacConnell, N; Maher, S; McDaid, D; Ramadurai, S; Sarangi, NK1
Bouwman, H; Kümmerer, K; Kylin, H; Nantaba, F; Palm, WU; Wasswa, J1

Reviews

1 review(s) available for levofloxacin and ibuprofen

ArticleYear
DILIrank: the largest reference drug list ranked by the risk for developing drug-induced liver injury in humans.
    Drug discovery today, 2016, Volume: 21, Issue:4

    Topics: Chemical and Drug Induced Liver Injury; Databases, Factual; Drug Labeling; Humans; Pharmaceutical Preparations; Risk

2016

Other Studies

15 other study(ies) available for levofloxacin and ibuprofen

ArticleYear
Assessment of the health effects of chemicals in humans: II. Construction of an adverse effects database for QSAR modeling.
    Current drug discovery technologies, 2004, Volume: 1, Issue:4

    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
Trend analysis of a database of intravenous pharmacokinetic parameters in humans for 670 drug compounds.
    Drug metabolism and disposition: the biological fate of chemicals, 2008, Volume: 36, Issue:7

    Topics: Blood Proteins; Half-Life; Humans; Hydrogen Bonding; Infusions, Intravenous; Pharmacokinetics; Protein Binding

2008
Physicochemical determinants of human renal clearance.
    Journal of medicinal chemistry, 2009, Aug-13, Volume: 52, Issue:15

    Topics: Humans; Hydrogen Bonding; Hydrogen-Ion Concentration; Hydrophobic and Hydrophilic Interactions; Kidney; Metabolic Clearance Rate; Molecular Weight

2009
Prediction of volume of distribution values in human using immobilized artificial membrane partitioning coefficients, the fraction of compound ionized and plasma protein binding data.
    European journal of medicinal chemistry, 2009, Volume: 44, Issue:11

    Topics: Blood Proteins; Chemistry, Physical; Computer Simulation; Humans; Membranes, Artificial; Models, Biological; Pharmaceutical Preparations; Protein Binding; Tissue Distribution

2009
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
    Chemical research in toxicology, 2010, Volume: 23, Issue:1

    Topics: Animals; Chemical and Drug Induced Liver Injury; Cluster Analysis; Databases, Factual; Humans; MEDLINE; Mice; Models, Chemical; Molecular Conformation; Quantitative Structure-Activity Relationship

2010
Physicochemical space for optimum oral bioavailability: contribution of human intestinal absorption and first-pass elimination.
    Journal of medicinal chemistry, 2010, Feb-11, Volume: 53, Issue:3

    Topics: Administration, Oral; Biological Availability; Humans; Intestinal Absorption; Pharmaceutical Preparations

2010
Developing structure-activity relationships for the prediction of hepatotoxicity.
    Chemical research in toxicology, 2010, Jul-19, Volume: 23, Issue:7

    Topics: Chemical and Drug Induced Liver Injury; Databases, Factual; Humans; Structure-Activity Relationship; Tetracyclines; Thiophenes

2010
A predictive ligand-based Bayesian model for human drug-induced liver injury.
    Drug metabolism and disposition: the biological fate of chemicals, 2010, Volume: 38, Issue:12

    Topics: Bayes Theorem; Chemical and Drug Induced Liver Injury; Humans; Ligands

2010
In vitro inhibition of the bile salt export pump correlates with risk of cholestatic drug-induced liver injury in humans.
    Drug metabolism and disposition: the biological fate of chemicals, 2012, Volume: 40, Issue:1

    Topics: Animals; ATP Binding Cassette Transporter, Subfamily B, Member 11; ATP-Binding Cassette Transporters; Bile Acids and Salts; Cell Line; Chemical and Drug Induced Liver Injury; Cholestasis; Drug-Related Side Effects and Adverse Reactions; Humans; Insecta; Rats; Risk Factors

2012
Preclinical strategy to reduce clinical hepatotoxicity using in vitro bioactivation data for >200 compounds.
    Chemical research in toxicology, 2012, Oct-15, Volume: 25, Issue:10

    Topics: Chemical and Drug Induced Liver Injury; Cytochrome P-450 Enzyme Inhibitors; Cytochrome P-450 Enzyme System; Decision Trees; Drug Evaluation, Preclinical; Drug-Related Side Effects and Adverse Reactions; Glutathione; Humans; Liver; Pharmaceutical Preparations; Protein Binding

2012
Mitigating the inhibition of human bile salt export pump by drugs: opportunities provided by physicochemical property modulation, in silico modeling, and structural modification.
    Drug metabolism and disposition: the biological fate of chemicals, 2012, Volume: 40, Issue:12

    Topics: Animals; ATP Binding Cassette Transporter, Subfamily B, Member 11; ATP-Binding Cassette Transporters; Bile Acids and Salts; Cell Line; Chemical and Drug Induced Liver Injury; Humans; Quantitative Structure-Activity Relationship

2012
Comparison of the accuracy of experimental and predicted pKa values of basic and acidic compounds.
    Pharmaceutical research, 2014, Volume: 31, Issue:4

    Topics: Chemistry, Pharmaceutical; Forecasting; Hydrogen-Ion Concentration; Pharmaceutical Preparations; Random Allocation

2014
Biofilm formation by Streptococcus pneumoniae strains and effects of human serum albumin, ibuprofen, N-acetyl-l-cysteine, amoxicillin, erythromycin, and levofloxacin.
    Diagnostic microbiology and infectious disease, 2010, Volume: 67, Issue:4

    Topics: Acetylcysteine; Amoxicillin; Anti-Bacterial Agents; Biofilms; Erythromycin; Humans; Ibuprofen; Levofloxacin; Ofloxacin; Serum Albumin; Streptococcus pneumoniae

2010
Microcavity-Supported Lipid Bilayers; Evaluation of Drug-Lipid Membrane Interactions by Electrochemical Impedance and Fluorescence Correlation Spectroscopy.
    Langmuir : the ACS journal of surfaces and colloids, 2019, 06-18, Volume: 35, Issue:24

    Topics: Alendronate; Clodronic Acid; Diclofenac; Dielectric Spectroscopy; Electric Impedance; Ibuprofen; Levofloxacin; Lipid Bilayers; Pefloxacin; Rifampin; Spectrometry, Fluorescence

2019
Spatial trends and ecotoxic risk assessment of selected pharmaceuticals in sediments from Lake Victoria, Uganda, East Africa.
    The Science of the total environment, 2024, Jan-01, Volume: 906

    Topics: Anti-Bacterial Agents; Ciprofloxacin; Ecosystem; Environmental Monitoring; Ibuprofen; Lakes; Levofloxacin; Metoprolol; Pharmaceutical Preparations; Risk Assessment; Uganda; Water Pollutants, Chemical

2024