cetirizine has been researched along with Disease Models, Animal in 19 studies
Cetirizine: A potent second-generation histamine H1 antagonist that is effective in the treatment of allergic rhinitis, chronic urticaria, and pollen-induced asthma. Unlike many traditional antihistamines, it does not cause drowsiness or anticholinergic side effects.
cetirizine : A member of the class of piperazines that is piperazine in which the hydrogens attached to nitrogen are replaced by a (4-chlorophenyl)(phenyl)methyl and a 2-(carboxymethoxy)ethyl group respectively.
Disease Models, Animal: Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases.
Excerpt | Relevance | Reference |
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"Intrathecally injected histamine increased incapacitation and articular edema, whereas the H1R antagonist, cetirizine, decreased both parameters." | 7.83 | Histaminergic Pharmacology Modulates the Analgesic and Antiedematogenic Effects of Spinally Injected Morphine. ( Eto, C; Fin, FE; Mascarin, L; Souza-Silva, E; Stein, T; Tonussi, CR, 2016) |
"Postcolitis rats displayed a higher number of colonic mast cells, excessive histamine release and significantly enhanced VMRs." | 7.80 | Histamine H4 and H1 receptors contribute to postinflammatory visceral hypersensitivity. ( De Man, JG; De Winter, BY; Deiteren, A; Moreels, TG; Pelckmans, PA; Ruyssers, NE, 2014) |
"The present study investigated the involvement of mediodorsal thalamic (MD) GABA-A receptors in cetirizine/morphine-induced anti-allodynia using a rat model of neuropathic pain." | 4.31 | Pharmacological activation of mediodorsal thalamic GABA-A receptors modulates morphine/cetirizine-induced changes in the prefrontal cortical GFAP expression in a rat model of neuropathic pain. ( Alijanpour, S; Asgharpour-Masouleh, N; Delphi, L; Rezayof, A, 2023) |
"Intrathecally injected histamine increased incapacitation and articular edema, whereas the H1R antagonist, cetirizine, decreased both parameters." | 3.83 | Histaminergic Pharmacology Modulates the Analgesic and Antiedematogenic Effects of Spinally Injected Morphine. ( Eto, C; Fin, FE; Mascarin, L; Souza-Silva, E; Stein, T; Tonussi, CR, 2016) |
"Postcolitis rats displayed a higher number of colonic mast cells, excessive histamine release and significantly enhanced VMRs." | 3.80 | Histamine H4 and H1 receptors contribute to postinflammatory visceral hypersensitivity. ( De Man, JG; De Winter, BY; Deiteren, A; Moreels, TG; Pelckmans, PA; Ruyssers, NE, 2014) |
"Cetirizine (Zytec) is often used as a histamine receptor-1 (H(1)) antagonist in rhinitis patients who are suffering from sneezing and rhinorrhea." | 3.75 | Effects of cetirizine on isolated rat's tracheal smooth muscle. ( Chu, YH; Kao, CH; Wang, HW, 2009) |
"The following study was performed to further characterize a primate model of asthma using classes of drugs that target allergy (pyrilamine, cetirizine), are bronchodilators for the treatment of asthma (salbutamol, salmeterol) or are anti-inflammatory (dexamethasone)." | 3.69 | Characterization of a primate model of asthma using anti-allergy/anti-asthma agents. ( Andresen, CJ; Smith, WB; Turner, CR; Watson, JW, 1996) |
"The cause of chronic pelvic pain in interstitial cystitis/painful bladder syndrome (IC/PBS) remains unclear; autoimmunity is a possible etiology." | 1.42 | Chronic pelvic allodynia is mediated by CCL2 through mast cells in an experimental autoimmune cystitis model. ( Altuntas, CZ; Bicer, F; Daneshgari, F; Izgi, K; Kavran, M; Ozer, A; Tuohy, VK, 2015) |
"Montelukast has not been reported to have major effects on sneezing and itching in the clinic but reduces nasal obstruction (lower nasal airway pressure or nasal patency)." | 1.35 | Differential responses to various classes of drugs in a model of allergic rhinitis in guinea pigs. ( Al Suleimani, YM; Dong, Y; Walker, MJ, 2008) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 1 (5.26) | 18.2507 |
2000's | 7 (36.84) | 29.6817 |
2010's | 8 (42.11) | 24.3611 |
2020's | 3 (15.79) | 2.80 |
Authors | Studies |
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Avdeef, A | 1 |
Tam, KY | 1 |
Solinski, HJ | 1 |
Dranchak, P | 1 |
Oliphant, E | 1 |
Gu, X | 1 |
Earnest, TW | 1 |
Braisted, J | 1 |
Inglese, J | 1 |
Hoon, MA | 1 |
Abrams, RPM | 1 |
Yasgar, A | 1 |
Teramoto, T | 1 |
Lee, MH | 1 |
Dorjsuren, D | 1 |
Eastman, RT | 1 |
Malik, N | 1 |
Zakharov, AV | 1 |
Li, W | 1 |
Bachani, M | 1 |
Brimacombe, K | 1 |
Steiner, JP | 1 |
Hall, MD | 1 |
Balasubramanian, A | 1 |
Jadhav, A | 1 |
Padmanabhan, R | 1 |
Simeonov, A | 1 |
Nath, A | 1 |
Chen, H | 1 |
Cheng, Y | 1 |
Du, H | 1 |
Zhang, C | 1 |
Zhou, Y | 1 |
Zhao, Z | 1 |
Li, Y | 1 |
Friedemann, T | 1 |
Mei, J | 1 |
Schröder, S | 1 |
Chen, M | 1 |
Asgharpour-Masouleh, N | 1 |
Rezayof, A | 1 |
Alijanpour, S | 1 |
Delphi, L | 1 |
Deiteren, A | 1 |
De Man, JG | 1 |
Ruyssers, NE | 1 |
Moreels, TG | 1 |
Pelckmans, PA | 1 |
De Winter, BY | 1 |
Raveendran, VV | 1 |
Kassel, KM | 1 |
Smith, DD | 1 |
Luyendyk, JP | 1 |
Williams, KJ | 1 |
Cherian, R | 1 |
Reed, GA | 1 |
Flynn, CA | 1 |
Csanaky, IL | 1 |
Lickteig, AL | 1 |
Pratt-Hyatt, MJ | 1 |
Klaassen, CD | 1 |
Dileepan, KN | 1 |
Liu, SC | 1 |
Chu, YH | 2 |
Kao, CH | 2 |
Wu, CC | 1 |
Wang, HW | 2 |
Bicer, F | 1 |
Altuntas, CZ | 1 |
Izgi, K | 1 |
Ozer, A | 1 |
Kavran, M | 1 |
Tuohy, VK | 1 |
Daneshgari, F | 1 |
Stein, T | 1 |
Souza-Silva, E | 1 |
Mascarin, L | 1 |
Eto, C | 1 |
Fin, FE | 1 |
Tonussi, CR | 1 |
Yokota, E | 2 |
Kuyama, S | 2 |
Ogawa, M | 2 |
Kamei, C | 3 |
Sugimoto, Y | 1 |
Bäumer, W | 1 |
Stahl, J | 1 |
Sander, K | 1 |
Petersen, LJ | 1 |
Paps, J | 1 |
Stark, H | 1 |
Kietzmann, M | 1 |
Olivry, T | 1 |
Minami, K | 1 |
Fujii, Y | 1 |
Al Suleimani, YM | 1 |
Dong, Y | 1 |
Walker, MJ | 1 |
Chimona, TS | 1 |
Panayiotides, JG | 1 |
Papadakis, CE | 1 |
Helidonis, ES | 1 |
Velegrakis, GA | 1 |
Turner, CR | 1 |
Andresen, CJ | 1 |
Smith, WB | 1 |
Watson, JW | 1 |
Musoh, K | 1 |
Maeda, Y | 1 |
Tanaka, H | 1 |
Inagaki, N | 1 |
Nagai, H | 1 |
19 other studies available for cetirizine and Disease Models, Animal
Article | Year |
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How well can the Caco-2/Madin-Darby canine kidney models predict effective human jejunal permeability?
Topics: Animals; Disease Models, Animal; Dogs; Humans; Jejunal Diseases; Kidney Diseases; Models, Biological | 2010 |
Inhibition of natriuretic peptide receptor 1 reduces itch in mice.
Topics: Animals; Behavior, Animal; Cell-Free System; Dermatitis, Contact; Disease Models, Animal; Ganglia, S | 2019 |
Therapeutic candidates for the Zika virus identified by a high-throughput screen for Zika protease inhibitors.
Topics: Animals; Antiviral Agents; Artificial Intelligence; Chlorocebus aethiops; Disease Models, Animal; Dr | 2020 |
Shufeng Jiedu capsule ameliorates olfactory dysfunction via the AMPK/mTOR autophagy pathway in a mouse model of allergic rhinitis.
Topics: AMP-Activated Protein Kinases; Animals; Anti-Allergic Agents; Anti-Bacterial Agents; Anti-Inflammato | 2022 |
Pharmacological activation of mediodorsal thalamic GABA-A receptors modulates morphine/cetirizine-induced changes in the prefrontal cortical GFAP expression in a rat model of neuropathic pain.
Topics: Animals; Cetirizine; Chronic Pain; Disease Models, Animal; GABA-A Receptor Agonists; Glial Fibrillar | 2023 |
Histamine H4 and H1 receptors contribute to postinflammatory visceral hypersensitivity.
Topics: Animals; Cetirizine; Colitis; Colonoscopy; Convalescence; Disease Models, Animal; Histamine; Histami | 2014 |
H1-antihistamines exacerbate high-fat diet-induced hepatic steatosis in wild-type but not in apolipoprotein E knockout mice.
Topics: Animals; Apolipoproteins E; ATP Binding Cassette Transporter, Subfamily B, Member 11; ATP-Binding Ca | 2014 |
Steroids and antihistamines synergize to inhibit rat's airway smooth muscle contractility.
Topics: Animals; Cetirizine; Cholinergic Agents; Disease Models, Animal; Drug Synergism; Electric Stimulatio | 2015 |
Chronic pelvic allodynia is mediated by CCL2 through mast cells in an experimental autoimmune cystitis model.
Topics: Animals; Cetirizine; Chemokine CCL2; Cromolyn Sodium; Cystitis, Interstitial; Disease Models, Animal | 2015 |
Histaminergic Pharmacology Modulates the Analgesic and Antiedematogenic Effects of Spinally Injected Morphine.
Topics: Analgesics, Opioid; Animals; Anti-Inflammatory Agents; Carrageenan; Cetirizine; Disease Models, Anim | 2016 |
Substance P is involved in the effect of histamine H3 receptor agonist, Sch 50971 on nasal allergic symptoms in mice.
Topics: Animals; Capsaicin; Cetirizine; Disease Models, Animal; Female; Histamine; Histamine Agonists; Hista | 2008 |
Participation of histamine H3 receptors in experimental allergic rhinitis of mice.
Topics: Animals; Anti-Allergic Agents; Cetirizine; Chemotaxis, Leukocyte; Disease Models, Animal; Dose-Respo | 2008 |
Effects of cetirizine on isolated rat's tracheal smooth muscle.
Topics: Animals; Anti-Allergic Agents; Cerebrospinal Fluid Rhinorrhea; Cetirizine; Disease Models, Animal; M | 2009 |
Lack of preventing effect of systemically and topically administered histamine H(1) or H(4) receptor antagonists in a dog model of acute atopic dermatitis.
Topics: Aging; Animals; Antigens, Dermatophagoides; Cetirizine; Dermatitis, Atopic; Dermatophagoides farinae | 2011 |
Participation of chemical mediators in the development of experimental allergic conjunctivitis in rats.
Topics: Administration, Oral; Animals; Carbazoles; Cetirizine; Conjunctivitis, Allergic; Disease Models, Ani | 2004 |
Differential responses to various classes of drugs in a model of allergic rhinitis in guinea pigs.
Topics: Acetates; Acute Disease; Animals; Cetirizine; Cyclopropanes; Dexamethasone; Disease Models, Animal; | 2008 |
Antihistamine effects on experimental middle ear inflammatory model.
Topics: Animals; Cetirizine; Disease Models, Animal; Ear, Middle; Female; Histamine H1 Antagonists, Non-Seda | 2008 |
Characterization of a primate model of asthma using anti-allergy/anti-asthma agents.
Topics: Albuterol; Animals; Anti-Allergic Agents; Anti-Inflammatory Agents; Antigens; Asthma; Bronchoconstri | 1996 |
Effect of a novel anti-allergic agent, HSR-609, on antigen-induced airway hyperresponsiveness in mice.
Topics: Acetylcholine; Animals; Anti-Allergic Agents; Anti-Inflammatory Agents; Benzoxepins; Bronchial Hyper | 2000 |