COX-2
- [1]. Smith FG, et al. Cyclooxygenase (COX) Inhibitors and the Newborn Kidney. Pharmaceuticals (Basel). 2012 Oct 25;5(11):1160-76. [Content Brief]
- [2]. Ahmadi M, et al. Non-steroidal anti-inflammatory drugs: recent advances in the use of synthetic COX-2 inhibitors. RSC Med Chem. 2022 Feb 14;13(5):471-496. [Content Brief]
- [3]. Bolli R, et al. Discovery of a new function of cyclooxygenase (COX)-2: COX-2 is a cardioprotective protein that alleviates ischemia/reperfusion injury and mediates the late phase of preconditioning. Cardiovasc Res. 2002 Aug 15;55(3):506-19. [Content Brief]
- [4]. Kirkby NS, et al. COX-2 protects against atherosclerosis independently of local vascular prostacyclin: identification of COX-2 associated pathways implicate Rgl1 and lymphocyte networks. PLoS One. 2014 Jun 2;9(6):e98165. [Content Brief]
- [5]. Segelcke D, et al. The role of the spinal cyclooxygenase (COX) for incisional pain in rats at different developmental stages. Eur J Pain. 2020 Feb;24(2):312-324. [Content Brief]
- [6]. Chatzipieris FP, et al. Recent advances in dual COX/LOX inhibitor design (2020-2024). Life. 2026;16(1):163. [Content Brief]
- [7]. Yang WL, et al. Cholinergic receptor up-regulates COX-2 expression and prostaglandin E(2) production in colon cancer cells. Carcinogenesis. 2000 Oct;21(10):1789-93. [Content Brief]
- [8]. Hsieh HL, et al. c-Src-dependent EGF receptor transactivation contributes to ET-1-induced COX-2 expression in brain microvascular endothelial cells. J Neuroinflammation. 2012 Jul 2;9:152. [Content Brief]
- [9]. Neeb L, et al. IL-1β stimulates COX-2 dependent PGE₂ synthesis and CGRP release in rat trigeminal ganglia cells. PLoS One. 2011 Mar 4;6(3):e17360. [Content Brief]
- [10]. Chen S, et al. 288 The COX-2 pathway as a mediator of resistance to anti-PD-1 therapy. J Immunother Cancer. 2021;9(Suppl 2):A312.
- [11]. Bishop-Bailey D, et al. Differential induction of cyclooxygenase-2 in human arterial and venous smooth muscle: role of endogenous prostanoids. Arterioscler Thromb Vasc Biol. 1998 Oct;18(10):1655-61. [Content Brief]
- [12]. Majumder M, et al. COX-2 Elevates Oncogenic miR-526b in Breast Cancer by EP4 Activation. Mol Cancer Res. 2015 Jun;13(6):1022-33. [Content Brief]
- [13]. Scott KF, et al. Functional coupling and differential regulation of the phospholipase A2-cyclooxygenase pathways in inflammation. J Leukoc Biol. 1999 Oct;66(4):535-41. [Content Brief]
- [14]. Smith WL, et al. Interactions of fatty acids, nonsteroidal anti-inflammatory drugs, and coxibs with the catalytic and allosteric subunits of cyclooxygenases-1 and -2. J Biol Chem. 2019 Feb 1;294(5):1697-1705. [Content Brief]
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COX-2 Related Products (507)
Related Products (507)
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Aspirin lithium
0 ImagesAspirin (Acetylsalicylic Acid) lithium is an orally active, potent and irreversible inhibitor of cyclooxygenase COX-1 and COX-2, with IC50 values of 5 and 210 μg/mL, respectively. Aspirin lithium induces apoptosis. Aspirin lithium inhibits the activation of NF-κB. Aspirin lithium also inhibits platelet prostaglandin synthetase, and can prevent coronary artery and cerebrovascular thrombosis. -
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Indomethacin sodium
0 ImagesIndomethacin (Indometacin) sodium is a potent, orally active COX1/2 inhibitor with IC50 values of 18 nM and 26 nM for COX-1 and COX-2, respectively. Indomethacin sodium has anticancer activity and anti-infective activity. Indomethacin sodium can be used for cancer, inflammation and viral infection research.. -
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- COX-2-IN-28
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Moracin G
0 ImagesCat. No.: HY-N17632CAS No.: 73338-86-0Moracin G is a plant-derived kinase modulator and receptor ligand that forms stable bindings with multiple key proteins (AKT1, COX2 and Estrogen receptor 1) and competitively inhibits the activity of specific kinases. By binding to MELK to disrupt cell cycle regulation, Moracin G impairs the survival and proliferation of cancer cells, induces cancer cell apoptosis, and thereby exerts anti-tumor potential. Moracin G can be used in research related to periodontitis and breast cancer. -
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Geiparvarin
0 ImagesCat. No.: HY-N15657CAS No.: 36413-91-9Geiparvarin is an anticancer agent and an inhibitor of MAO-B (pIC50 = 6.84 μM). Geiparvarin exerts anti-tumor effects by downregulating COX2 expression and inhibiting angiogenesis. Geiparvarin blocks the cell cycle at the G1 phase and induces apoptosis of cancer cells. Geiparvarin has anti-microtubule activity and destroys the cytoskeleton to exert anti-proliferative effects. Geiparvarin has research significance for lung cancer, leukemia, and breast cancer. -
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- Tolmetin sodium
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COX-2-IN-67
0 ImagesCat. No.: HY-184292COX-2-IN-67 is an orally active, blood-brain barrier permeable multi-target inhibitor that potently targets COX-2 (IC50=0.07 μM), hCA IX (Ki=62.7 nM) and hBuChE (IC50=0.47 μM). COX-2-IN-67 alleviates oxidative stress and liver stress, improves glucose homeostasis and insulin sensitivity, and optimizes lipid profiles. Meanwhile, COX-2-IN-67 effectively reduces the levels of neuroinflammatory markers and improves hippocampus-dependent cognitive function in a high-fat diet-induced rat model. COX-2-IN-67 can be used for the research of metabolic dysfunction-associated mild cognitive impairment. -
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SD 8381
0 ImagesCat. No.: HY-108019CAS No.: 215123-80-1SD 8381 is a potent and selective COX-2 inhibitor. SD 8381 shows IC50 values of 0.0098 μM for hCOX-2 and 0.69 μM for hCOX-1. -
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- COX-2-IN-56
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Jaceosidin (Standard)
0 ImagesCat. No.: HY-N0831RCAS No.: 18085-97-7Jaceosidin (Standard) is the analytical standard of Jaceosidin. This product is intended for research and analytical applications. Jaceosidin is a flavonoid isolated from Artemisia vestita, induces apoptosis in cancer cells, activates Bax and down-regulates Mcl-1 and c-FLIP expression. Jaceosidin exhibits anti-cancer, anti-inflammatory activities, decreases leves of inflammatory markers, and suppresses COX-2 expression and NF-κB activation. -
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- EGFR-IN-190
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COX-2/CA II-2
0 ImagesCat. No.: HY-184938COX-2/CA II-2 is an orally active dual selective inhibitor targeting COX-2 and hCA II. COX-2/CA II-2 inhibits COX-2 with an IC50 value of 0.05 μM (SI = 12.02 vs COX-1) and hCA II with a Ki value of 62.6 nM (SI = 704.2 vs hCA I). COX-2/CA II-2 demonstrates significant analgesic and anti-inflammatory effects with rapid onset and sustained duration in animal models, shows improved gastric safety with reduced ulcerogenic liability, and exhibits a gradual intraocular pressure (IOP)-lowering effect without statistical significance relative to the sham-treated eye in rabbit glaucoma models. COX-2/CA II-2 can be used for anti-inflammatory, analgesic and antiglaucoma research. -
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JNUTS013
0 ImagesCat. No.: HY-182779CAS No.: 2763983-45-3JNUTS013 is a NLRP3 inflammasome inhibitor. JNUTS013 promotes proteasome-dependent degradation of NLRP3 and inhibits the release of downstream cytokines. JNUTS013 downregulates the expression of inflammation-related proteins including iNOS and COX-2. JNUTS013 exhibits anti-inflammatory activity and can be used in the research of inflammatory diseases. -
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Antitumor agent-77
0 ImagesCat. No.: HY-151429CAS No.: 2870703-21-0Antitumor agent-77 is an antitumor agent, inhibits cancer cells growth and migration. Antitumor agent-77 triggers ferroptosis by inhibiting GPx-4 and elevating COX2. Antitumor agent-77 also activates intrinsic apoptotic pathway (Bax-Bcl-2-caspase-3) and hinders Epithelial-mesenchymal transition (EMT) process of cancer cells. -
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Brazzein
0 ImagesCat. No.: HY-P11646CAS No.: 178359-31-4Brazzein is a functional sweetener with antioxidant, anti-inflammatory, and anti-allergic activities.Brazzein inhibits COX-2 with an IC50 of 12.62 μM. Brazzein exhibits strong antioxidant effects, showing ABTS radical scavenging activity (IC50 = 12.55 μM). Brazzein shows no antibacterial or antifungal activity. Brazzein can be used for the research of obesity, metabolic disorder, inflammation. -
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- COX-1-IN-1
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- Desmethyl etoricoxib
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- COX-2/LOX-IN-1
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COX-1/2-IN-2
0 ImagesCat. No.: HY-115967CAS No.: 2882832-86-0COX-1/2-IN-2 is a potent COX1/2 inhibitor. COX-1/2-IN-2 exhibits significant inhibitory effect against COX-1 and COX-2 inhibitor with IC50 values of 9.7 ± 0.09 µM and 4.6 ± 1.45 µM, respectively. -
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- Topo I/COX-2-IN-2
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