ibuprofen has been researched along with fluorescein-5-isothiocyanate in 9 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 3 (33.33) | 29.6817 |
2010's | 5 (55.56) | 24.3611 |
2020's | 1 (11.11) | 2.80 |
Authors | Studies |
---|---|
Kannan, RM; Kannan, S; Kolhe, P; Lieh-Lai, M; Misra, E | 1 |
Graboski, S; Hanna, N; Laskin, DL; Weinberger, B | 1 |
Darling-Reed, S; Elsisi, NS; Lee, EY; Oriaku, ET; Soliman, KF | 1 |
Alkilani, AZ; Donnelly, RF; Garland, MJ | 1 |
Harrington, Pde B; Mao, Y; Qu, LB; Yang, R; Yu, L | 1 |
Lee, SW; Tran, VA | 1 |
Chen, W; Dong, A; Feng, Z; Gao, P; Wang, Y; Yuan, Y; Zhang, C; Zhi, M | 1 |
Lowinger, MB; Ormes, JD; Small, JH; Su, Y; Williams, RO; Zhang, F | 1 |
Abdul, NR; Balde, A; Kim, SK | 1 |
9 other study(ies) available for ibuprofen and fluorescein-5-isothiocyanate
Article | Year |
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Drug complexation, in vitro release and cellular entry of dendrimers and hyperbranched polymers.
Topics: Anti-Inflammatory Agents; Biphenyl Compounds; Cell Line, Tumor; Chromatography, High Pressure Liquid; Dendrimers; Drug Carriers; Fluorescein-5-isothiocyanate; Humans; Ibuprofen; In Vitro Techniques; Kinetics; Loperamide; Magnetic Resonance Imaging; Molecular Conformation; Polyamines; Polyesters; Solubility; Spectrophotometry, Ultraviolet; Spectroscopy, Fourier Transform Infrared | 2003 |
Effects of ibuprofen and hypoxia on neutrophil apoptosis in neonates.
Topics: Annexin A5; Apoptosis; Cell Hypoxia; Cells, Cultured; Chemokine CCL3; Chemokine CCL4; Cyclooxygenase Inhibitors; Fetal Blood; Flow Cytometry; Fluorescein-5-isothiocyanate; Humans; Ibuprofen; Infant, Newborn; Lipopolysaccharides; Macrophage Inflammatory Proteins; Neutrophils; Oxygen; Tumor Necrosis Factor-alpha | 2004 |
Ibuprofen and apigenin induce apoptosis and cell cycle arrest in activated microglia.
Topics: Animals; Annexin A5; Anti-Inflammatory Agents; Anti-Inflammatory Agents, Non-Steroidal; Apigenin; Apoptosis; Cell Cycle; Cell Line; Cell Proliferation; DNA Damage; Fluorescein-5-isothiocyanate; G2 Phase; Gliosis; Ibuprofen; In Situ Nick-End Labeling; Mice; Microglia; Nerve Degeneration; Propidium; Up-Regulation | 2005 |
Microneedle-iontophoresis combinations for enhanced transdermal drug delivery.
Topics: Administration, Cutaneous; Animals; Animals, Newborn; Drug Delivery Systems; Fluorescein-5-isothiocyanate; Hydrogels; Ibuprofen; Insulin; Iontophoresis; Microinjections; Needles; Rats; Serum Albumin, Bovine; Skin; Swine | 2014 |
A novel method for the study of molecular interaction by using microscale thermophoresis.
Topics: Animals; Binding, Competitive; Cattle; Fluorescein-5-isothiocyanate; Hydrophobic and Hydrophilic Interactions; Ibuprofen; Kinetics; Models, Molecular; Motion; Protein Aggregates; Protein Binding; Serum Albumin, Bovine; Spectrometry, Fluorescence; Thermodynamics; Warfarin | 2015 |
A prominent anchoring effect on the kinetic control of drug release from mesoporous silica nanoparticles (MSNs).
Topics: Drug Carriers; Drug Liberation; Fluorescein-5-isothiocyanate; Humans; Hydrogen-Ion Concentration; Ibuprofen; Indoles; Kinetics; Nanoparticles; Particle Size; Polymers; Porosity; Propylamines; Silanes; Silicon Dioxide; Surface Properties | 2018 |
Sustained co-delivery of ibuprofen and basic fibroblast growth factor by thermosensitive nanoparticle hydrogel as early local treatment of peri-implantitis.
Topics: Animals; Anti-Inflammatory Agents; Cattle; Cell Adhesion; Cell Proliferation; Drug Delivery Systems; Drug Liberation; Fibroblast Growth Factor 2; Fibroblasts; Fluorescein-5-isothiocyanate; Gingiva; Humans; Hydrogels; Ibuprofen; Micelles; Nanoparticles; Particle Size; Peri-Implantitis; Polymers; Serum Albumin, Bovine; Temperature; Viscosity | 2019 |
How broadly can poly(urethane)-based implants be applied to drugs of varied properties?
Topics: Dextrans; Diffusion; Drug Implants; Emtricitabine; Fluorescein-5-isothiocyanate; Hydrophobic and Hydrophilic Interactions; Ibuprofen; Membranes, Artificial; Metoprolol; Molecular Weight; Permeability; Polyurethanes; Porosity | 2019 |
Crab (Charybdis natator) exoskeleton derived chitosan nanoparticles for the in vivo delivery of poorly water-soluble drug: Ibuprofen.
Topics: Animals; Brachyura; Chitosan; Drug Carriers; Drug Delivery Systems; Excipients; Exoskeleton Device; Fluorescein-5-isothiocyanate; Ibuprofen; Nanoparticles; Particle Size; Water; Zebrafish | 2022 |