acridine orange has been researched along with Disease Models, Animal in 16 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (6.25) | 18.7374 |
1990's | 2 (12.50) | 18.2507 |
2000's | 8 (50.00) | 29.6817 |
2010's | 4 (25.00) | 24.3611 |
2020's | 1 (6.25) | 2.80 |
Authors | Studies |
---|---|
Baaklini, CS; Burr, MK; Caprariello, AV; Hammond, BP; Ho, MFS; Kerr, BJ; Lee, KV; Mainali, A; Panda, SP; Plemel, JR; Power, C; Simmen, T; Sizov, A; Williams, S; Zia, S; Zirngibl, M | 1 |
Arita, R; Enaida, H; Hafezi-Moghadam, A; Ishibashi, T; Matsui, T; Nakama, T; Nakao, S; Yoshida, S; Yoshikawa, H | 1 |
Borisova, TA; Krisanova, NV; Trikash, IO | 1 |
Copitin, N; Fernández, AM; González, M; Molinari, JL; Solano, S; Tato, P; Zepeda, N | 1 |
Laird, AS; Robberecht, W | 1 |
Clermont-Taranchon, E; Kalamarides, M; Peyre, M; Stemmer-Rachamimov, A | 1 |
Honda, Y; Ieki, Y; Kiryu, J; Miura, S; Nishijima, K; Nishiwaki, H; Nonaka, A; Yamashiro, K | 1 |
Hirose, F; Honda, Y; Katsuta, H; Kiryu, J; Miyahara, S; Miyamoto, K; Musashi, K; Tamura, H; Yoshimura, N | 1 |
Brouillette, E; Grondin, G; Malouin, F; Talbot, BG | 1 |
Darro, F; De Nève, N; Dumont, P; Gaussin, JF; Kiss, R; Mathieu, V; Mijatovic, T; Ribaucour, F; Van Quaquebeke, E | 1 |
Miyake, T; Mizuno, S; Morita, H; Nishiwaki, A; Ogura, Y | 1 |
Demling, L; Richter, K; Riemann, JF; Schmidt, H | 1 |
Kish, SJ; Tatton, NA | 1 |
Hubbard, WC; Kaufman, PL; Weber, AJ | 1 |
Barnes, TB; Car, BD; Coffey, RJ; Goldenring, JR; Haley, PJ; Meunier, PC; Ray, GS | 1 |
Aomori, K; Ashihara, T; Hashiguchi, S; Hirasawa, Y; Kusuzaki, K; Minami, G; Murata, H; Suginoshita, T; Takeshita, H | 1 |
16 other study(ies) available for acridine orange and Disease Models, Animal
Article | Year |
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Single-cell microglial transcriptomics during demyelination defines a microglial state required for lytic carcass clearance.
Topics: Acridine Orange; Animals; Cuprizone; Demyelinating Diseases; Disease Models, Animal; Mice; Mice, Inbred C57BL; Microglia; Transcriptome | 2022 |
Wide-field laser ophthalmoscopy for mice: a novel evaluation system for retinal/choroidal angiogenesis in mice.
Topics: Acridine Orange; Animals; Choroidal Neovascularization; Disease Models, Animal; Equipment Design; Fluorescein Angiography; Fluorescent Dyes; Fundus Oculi; Lasers; Mice; Mice, Inbred C57BL; Ophthalmoscopes; Ophthalmoscopy; Oxygen; Reproducibility of Results; Retinal Neovascularization | 2013 |
Synaptopathy under conditions of altered gravity: changes in synaptic vesicle fusion and glutamate release.
Topics: Acridine Orange; Adenosine Triphosphate; Animals; Brain; Calcium Signaling; Cell Compartmentation; Cognition Disorders; Cytoplasm; Disease Models, Animal; Exocytosis; Fluorescent Dyes; Glutamic Acid; Hypergravity; Magnesium; Male; Membrane Fusion; Presynaptic Terminals; Rats; Rats, Wistar; Synaptic Transmission; Synaptic Vesicles; Synaptosomes | 2009 |
Taenia crassiceps: infections of male mice lead to severe disruption of seminiferous tubule cells and increased apoptosis.
Topics: Acridine Orange; Animals; Apoptosis; Coloring Agents; Disease Models, Animal; Fluorescent Dyes; In Situ Nick-End Labeling; Male; Mice; Mice, Inbred BALB C; Microscopy, Confocal; Microscopy, Electron, Transmission; Seminiferous Tubules; Taenia; Taeniasis; Tolonium Chloride | 2011 |
Modeling neurodegenerative diseases in zebrafish embryos.
Topics: Acridine Orange; Animals; Axons; Cell Death; Disease Models, Animal; Embryo, Nonmammalian; Fluorescent Antibody Technique; Injections; Motor Neurons; Neurodegenerative Diseases; RNA, Messenger; Staining and Labeling; Transcription, Genetic; Zebrafish; Zebrafish Proteins | 2011 |
Miniaturized handheld confocal microscopy identifies focal brain invasion in a mouse model of aggressive meningioma.
Topics: Acridine Orange; Animals; Brain; Cyclin-Dependent Kinase Inhibitor p16; Disease Models, Animal; Humans; Indocyanine Green; Meningeal Neoplasms; Meningioma; Mice; Mice, Transgenic; Microscopy, Confocal; Neoplasm Recurrence, Local; Neurofibromatosis 2 | 2013 |
Experimental macular edema induced by macular venule occlusion in monkey.
Topics: Acridine Orange; Animals; Blood Flow Velocity; Disease Models, Animal; Fluorescein Angiography; Fluorescent Dyes; Interferometry; Laser Coagulation; Leukocytes; Light; Macaca fascicularis; Macular Edema; Retinal Vein; Retinal Vein Occlusion; Retinal Vessels; Tomography; Venules | 2002 |
In vivo three-dimensional evaluation of leukocyte behavior in retinal microcirculation of mice.
Topics: Acridine Orange; Animals; Disease Models, Animal; Endothelium, Vascular; Fluorescent Dyes; Fluorophotometry; Leukocyte Count; Leukocytes; Lipopolysaccharides; Male; Mice; Mice, Inbred C57BL; Microcirculation; Microscopy, Confocal; Retinal Vessels; Salmonella typhimurium; Uveitis | 2004 |
Inflammatory cell infiltration as an indicator of Staphylococcus aureus infection and therapeutic efficacy in experimental mouse mastitis.
Topics: Acridine Orange; Animals; Anti-Bacterial Agents; Cattle; Cephapirin; Colony Count, Microbial; Disease Models, Animal; Female; Fluorescent Dyes; Image Processing, Computer-Assisted; Mammary Glands, Animal; Mastitis, Bovine; Mice; Microscopy, Fluorescence; Neutrophils; Staphylococcal Infections; Staphylococcus aureus; Statistics, Nonparametric | 2005 |
Cardenolide-induced lysosomal membrane permeabilization demonstrates therapeutic benefits in experimental human non-small cell lung cancers.
Topics: Acridine Orange; Animals; Antineoplastic Agents; Carcinoma, Non-Small-Cell Lung; Cardenolides; Cathepsin B; Cell Line, Tumor; Disease Models, Animal; Female; Gene Expression Regulation, Neoplastic; HSP70 Heat-Shock Proteins; Humans; Lung Neoplasms; Lysosomes; Mice; Mice, Nude | 2006 |
Effects of periocular administration of triamcinolone acetonide on leukocyte-endothelium interactions in the ischemic retina.
Topics: Acridine Orange; Animals; Cell Communication; Disease Models, Animal; Endothelium, Vascular; Fluorescent Dyes; Gene Expression; Glucocorticoids; Injections; Intercellular Adhesion Molecule-1; Ischemia; Leukocytes; Macular Edema; Male; P-Selectin; Rats; Rats, Long-Evans; Retinal Diseases; Retinal Vessels; Reverse Transcriptase Polymerase Chain Reaction; RNA, Messenger; Triamcinolone Acetonide | 2007 |
The "Internal Leak" as a possible cause in the pathogenesis of peptic ulcer.
Topics: Acridine Orange; Animals; Aspirin; Cats; Disease Models, Animal; Gastric Mucosa; Peptic Ulcer | 1981 |
In situ detection of apoptotic nuclei in the substantia nigra compacta of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine-treated mice using terminal deoxynucleotidyl transferase labelling and acridine orange staining.
Topics: 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine; Acridine Orange; Animals; Apoptosis; Cats; Cell Nucleus; Disease Models, Animal; DNA; Dopamine Agents; Fluorescent Dyes; Male; Mice; Mice, Inbred C57BL; Microscopy, Confocal; Necrosis; Nucleotidyltransferases; Parkinson Disease, Secondary; Staining and Labeling; Substantia Nigra | 1997 |
Morphology of single ganglion cells in the glaucomatous primate retina.
Topics: Acridine Orange; Animals; Axons; Dendrites; Disease Models, Animal; Female; Fluorescent Dyes; Glaucoma, Open-Angle; Intraocular Pressure; Isoquinolines; Laser Coagulation; Macaca mulatta; Male; Microscopy, Confocal; Optic Nerve Diseases; Retinal Degeneration; Retinal Ganglion Cells; Trabecular Meshwork | 1998 |
Reversible drug-induced oxyntic atrophy in rats.
Topics: Acridine Orange; Aminopyrine; Animals; Anti-Inflammatory Agents, Non-Steroidal; Atrophy; Azetidines; Carbon Radioisotopes; Disease Models, Animal; Enzyme Inhibitors; Fluorescent Dyes; Gastric Acid; Gastrins; Gastritis; H(+)-K(+)-Exchanging ATPase; Ionophores; Leukocyte Elastase; Male; Necrosis; Nigericin; Parietal Cells, Gastric; Piperazines; Rabbits; Rats; Rats, Sprague-Dawley; Regeneration; Stomach | 2000 |
Total tumor cell elimination with minimum damage to normal tissues in musculoskeletal sarcomas following photodynamic therapy with acridine orange.
Topics: Acridine Orange; Animals; Antineoplastic Agents; Bone Neoplasms; Curettage; Disease Models, Animal; Male; Mice; Mice, Inbred C3H; Musculoskeletal Diseases; Mutagens; Osteosarcoma; Photochemotherapy; Treatment Outcome | 2000 |