p38 MAPK
- [1]. Hasan AM, et al. Involvement of the α/β isoform of p38 MAP kinase in chemotactic responses of human eosinophils to eotaxin (CCL11) and RANTES (CCL5). Am J Immunol. 2017;13:209-215.
- [2]. Ganguly P, et al. Revisiting p38 Mitogen-Activated Protein Kinases (MAPK) in Inflammatory Arthritis: A Narrative of the Emergence of MAPK-Activated Protein Kinase Inhibitors (MK2i). Pharmaceuticals (Basel). 2023 Sep 12;16(9):1286. [Content Brief]
- [3]. Carlini MJ, et al. Identification of p38 MAPK inhibition as a neuroprotective strategy for combinatorial SMA therapy. EMBO Mol Med. 2025 Oct;17(10):2762-2786. [Content Brief]
- [4]. Falcicchia C, et al. Involvement of p38 MAPK in Synaptic Function and Dysfunction. Int J Mol Sci. 2020 Aug 6;21(16):5624. [Content Brief]
- [5]. Xing L. Clinical candidates of small molecule p38 MAPK inhibitors for inflammatory diseases. MAP Kinase. 2015;4:5508.
- [6]. Corre I, et al. The p38 pathway, a major pleiotropic cascade that transduces stress and metastatic signals in endothelial cells. Oncotarget. 2017 May 29;8(33):55684-55714. [Content Brief]
- [7]. Jiang R, et al. Effectiveness of exercise on perinatal depression and anxiety symptoms: A network meta-analysis and dose-response analysis. Int J Gynaecol Obstet. 2026 Jun;173(3):1308-1324. [Content Brief]
- [8]. Onishi T, et al. The PERK-p38 MAPK Axis Drives Endoplasmic Reticulum Stress-Induced Apoptosis in Fuchs Endothelial Corneal Dystrophy. Invest Ophthalmol Vis Sci. 2025 Aug 1;66(11):63. [Content Brief]
- [9]. Sun Y, et al. Suppression of Alzheimer's disease-related phenotypes by the heat shock protein 70 inducer, geranylgeranylacetone, in APP/PS1 transgenic mice via the ERK/p38 MAPK signaling pathway. Exp Ther Med. 2017 Dec;14(6):5267-5274. [Content Brief]
- [10]. Hermans A, et al. A 3D-Printed and Freely Available Device to Measure the Zebrafish Optokinetic Response Before and After Injury. Zebrafish. 2024 Apr;21(2):144-148. [Content Brief]
- [11]. Chen S, et al. Activation of melanocortin receptor 4 with RO27-3225 attenuates neuroinflammation through AMPK/JNK/p38 MAPK pathway after intracerebral hemorrhage in mice. J Neuroinflammation. 2018 Apr 11;15(1):106. [Content Brief]
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p38 MAPK Inhibitors
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p38 MAPK Agonists
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p38 MAPK Antagonists
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p38 MAPK Activators
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p38 MAPK Modulators
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p38 MAPK p53 Inhibitor
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p38 MAPK Inducers
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p38 MAPK Degrader
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p38 MAPK Control
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p38 MAPK Related Products (798)
Related Products (798)
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Antibodies (8)
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Epimedin B (Standard)
0 ImagesCat. No.: HY-N0259RCAS No.: 110623-73-9Synonyms: Epmedin B (Standard)Epimedin B (Standard) (Epmedin B (Standard)) is the analytical standard of Epimedin B (HY-N0259). This product is intended for research and analytical applications. Epimedin B (Epmedin B) is a flavonoid active component found in Epimedium, with oral activity, and exhibits anti-osteoporotic and neuroprotective effects. Epimedin B inhibits RANKL-induced osteoclast differentiation, F-actin ring formation, and mature osteoclast bone resorption, inhibits the phosphorylation of JNK, p38 MAPK, PI3K, and AKT, activates the AMPK-Nrf2 antioxidant pathway, and reduces cellular and mitochondrial ROS. Epimedin B acts on ESR1 and exerts its effects via GPER. Epimedin B alleviates bone loss and improves bone microstructure in vivo, and in Parkinson's models protects dopaminergic neurons and maintains striatal dopamine levels through anti-apoptotic and anti-endoplasmic reticulum stress effects. Epimedin B can be used for research related to osteoporosis, diabetic osteoporosis, and Parkinson's disease. -
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Multi-kinase-IN-11
0 ImagesCat. No.: HY-18909CAS No.: 1157857-36-7 -
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Bromuconazole
0 ImagesCat. No.: HY-W715812CAS No.: 116255-48-2Bromuconazole is a triazole fungicide with oral efficacy and blood-brain barrier permeability. Bromuconazole protects crops from various fungal contaminations. Bromuconazole exhibits cytotoxicity against a variety of cancer cells, induces G0/G1 cell cycle arrest and inhibits DNA synthesis in cancer cells, and triggers cytoskeletal structural disorder, genotoxic damage, apoptotic (apoptosis) cell death, and mitochondrial membrane depolarization. Bromuconazole activates caspase-3, induces excessive production of ROS, p53 and Bax, lipid peroxidation, increased activities of SOD and CAT, and downregulates Bcl-2. By upregulating p-ERK1/2 and p-JNK, Bromuconazole disrupts the MAPK signaling pathway, impairs the cellular stress response of human trophoblast cells and endometrial cells, and damages the implantation process. Bromuconazole is applicable to research related to glioma, colon cancer, reproductive injury (implantation dysfunction), and cardiac dysfunction. -
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SB 242235 (Standard)
0 ImagesSB 242235 (Standard) is the analytical standard of SB 242235. This product is intended for research and analytical applications. SB-242235 is a potent and selective p38 MAP kinase inhibitor, with an IC50 of 1.0 μM in primary human chondrocytes. -
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7-Ketocholesterol (Standard)
0 Images7-Ketocholesterol (Standard) is the analytical standard of 7-Ketocholesterol. This product is intended for research and analytical applications. 7-Ketocholesterol is an oxidation product of cholesterol, widely present in atherosclerotic plaques, and has a stronger atherogenic effect than cholesterol. 7-Ketocholesterol can inhibit the rate-limiting enzymes involved in bile acid and cholesterol synthesis, such as cholesterol 7α-hydroxylase and HMG-CoA reductase. 7-Ketocholesterol exhibits pro-inflammatory effects both in vivo and in vitro and can induce cell apoptosis (apoptosis). -
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ZINC-1000507824
0 ImagesCat. No.: HY-181963ZINC-1000507824 is a non-covalent reversible RNA cytosine-5 methyltransferase NSUN2 inhibitor. ZINC-1000507824 targets the SAM cofactor binding pocket of NSUN2 and forms stable NSUN2-ligand complexes. ZINC-1000507824 destabilizes oncogenic mRNAs encoding PI3K/AKT and MAPK/ERK pathway components, attenuates growth signals, reduces proliferative drive, and restores therapy sensitivity in cancer cells. ZINC-1000507824 can be used for the research of NSUN2-driven malignancies. -
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p38 MAP Kinase-IN-4
0 ImagesCat. No.: HY-183531CAS No.: 1228148-61-5p38 MAP Kinase-IN-4 is a p38α MAPK inhibitor with an IC50 of 40.5 nM. p38 MAP Kinase-IN-4 is applicable to inflammation-related research. -
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FGIN 1-27 (Standard)
0 ImagesCat. No.: HY-101059RCAS No.: 142720-24-9FGIN 1-27 (Standard) is the analytical standard of FGIN 1-27 (HY-101059). This product is intended for research and analytical applications. FGIN-1-27 is a blood-brain barrier-penetrant TSPO ligand with a Ki value of 5 nM. FGIN 1-27 inhibits PKC-β, PKA/CREB, p38/ERK MAPK, MITF, tyrosinase, TRP-1, and TRP-2, thereby inhibiting melanogenesis and pigmentation. FGIN-1-27 alleviates X-ray radiation-induced astrocyte mitochondrial hyperfunction, reduces ROS and superoxide production, inhibits excessive activation of A1-type astrocytes, downregulates GFAP and C3 protein expression, and restores astrocyte proliferative capacity. FGIN-1-27 produces anticonvulsant effects in normal mice; in diazepam-withdrawn mice, the brain MDR pathway becomes subsensitive, and the anticonvulsant activity disappears. FGIN-1-27 attenuates pigmentation in zebrafish embryos and ameliorates UVB-induced skin pigmentation in guinea pigs. FGIN-1-27 directly stimulates testicular Leydig cells while upregulating luteinizing hormone levels, causing an acute increase in serum testosterone in male rats. FGIN 1-27 can be used for research related to hyperpigmentation, epilepsy, brain injury, and other diseases. -
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Iroxanadine hydrochloride
0 ImagesCat. No.: HY-19399DCAS No.: 276690-59-6Synonyms: (-)-BRX 005 hydrochloride; (-)-BRX 235 hydrochlorideIroxanadine (BRX 005) hydrochloride is a vasculoprotector. Iroxanadine is a p38 kinase and HSP protein dual activator. Iroxanadine hydrochloride has the potential for atherosclerosis and vascular diseases research. -
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Gamma-glutamylcysteine ammonium
0 ImagesCat. No.: HY-113402BSynonyms: γ-Glu-Cys ammoniumGamma-glutamylcysteine ammonium (γ-Glu-Cys ammonium) is an orally active, blood-brain barrier permeable dipeptide. Gamma-glutamylcysteine ammonium activates AMPK, SIRT1, IL-4/STAT6, AC/cAMP/PI3K, IGF-1R/IRS1/PI3K, and Nrf2 signaling pathways; it inhibits NF-κB, JAK1/STAT1/3, MAPKs, cadmium-induced p38 MAPK, JNK, and PI3K/Akt signaling pathways. Gamma-glutamylcysteine ammonium regulates macrophage polarization, modulates the trafficking of CD36 and GLUT4, induces glutathione synthesis, improves metabolic dysfunction, reduces lipid deposition, ameliorates glucose homeostasis, inhibits apoptosis (Apoptosis), stabilizes mitochondria, suppresses lipid peroxidation, iron accumulation and ferroptosis (Ferroptosis), reduces ds-HMGB1 levels, reverses mechanical hyperalgesia, and alleviates hepatic lipid droplet formation. Gamma-glutamylcysteine ammonium is applicable to research related to inflammatory bowel disease, type 2 diabetes, cadmium-induced neurotoxicity, Alzheimer's disease, cerebral ischemia/reperfusion injury, neuropathy, and alcoholic liver disease. -
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SKF-86002 (Standard)
0 ImagesSKF-86002 (Standard) is the analytical standard of SKF-86002. This product is intended for research and analytical applications. SKF-86002 is an orally active p38 MAPK inhibitor, with anti-inflammatory, anti-arthritic and analgesic activities. SKF-86002 inhibits lipopolysaccharide (LPS)-stimulate human monocyte IL-1 and TNF-α production (IC50 = 1 μM). SKF-86002 inhibits lipoxygenase- and cyclooxygenase-mediated metabolism of arachidonic acid. -
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Hypaphorine (Standard)
0 ImagesHypaphorine is an indole found in Caragana korshinskii. Hypaphorine has neurological and glucose-lowering effects. Hypaphorine prevents Lipopolysaccharides (LPS) (HY-D1056)-mediated acute lung injury (ALI) and proinflammatory response via inactivating the p38/JNK signaling pathway by upregulating DUSP1. -
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PMK1-IN-1
0 ImagesCat. No.: HY-179252PMK1-IN-1 (compound H17) is a potent PMK1 inhibitor. PMK1-IN-1 shows superior inhibitory effects against M. oryzae by targeting the pathogenicity MAPK MoPMk1, with an IC50 of 0.42 μM. PMK1-IN-1 exhibits effects in vivo similar to those of Carbendazim (HY-13582). PMK1-IN-1 can be used for rice blast disease research. -
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RWJ-67657 (Standard)
0 ImagesCat. No.: HY-15505RCAS No.: 215303-72-3Synonyms: JNJ 3026582 (Standard)RWJ-67657 (Standard) is the analytical standard of RWJ-67657. This product is intended for research and analytical applications. RWJ-67657 (JNJ 3026582) is an orally active and selective p38α and p38β MAPK inhibitor with IC50s of 1 and 11 μM, respectively. RWJ-67657 displays no activity at p38γ and p38δ, and exhibits cardio protective effect. Anti-inflammatory and anti-tumor activity. -
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- WEIZ-WX-04-008
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p38 MAPK-IN-11
0 ImagesCat. No.: HY-183530CAS No.: 152121-51-2p38 MAPK-IN-11 is a CSBP (p38 MAPK) kinase inhibitor with IC50 values of 0.15 μM (binding activity) and 0.21 μM (inhibitory activity). p38 MAPK-IN-11 shows weak inhibitory activity against PKCα kinase, with an IC50 of 7.6 μM. p38 MAPK-IN-11 inhibits the production of IL-1. p38 MAPK-IN-11 also acts as a β-lactam antibiotic potentiator, but has no antibacterial activity itself. -
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p38 MAP Kinase-IN-1
0 ImagesCat. No.: HY-171275CAS No.: 815595-27-8p38 MAP Kinase-IN-1 (Compound 4) is the inhibitor for p38, and can be used for inflammation and auto-immune responses related research. -
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L-Quebrachitol (Standard)
0 ImagesL-Quebrachitol is a methoxy analog of inositol that can be isolated from plants. L-Quebrachitol has free-radical scavenging, gastroprotection, anti-platelet aggregation and anti-diabetic activity. L-Quebrachitol promotes osteoblastogenesis by uppregulation of BMP-2, runt-related transcription factor-2 (Runx2), MAPK (ERK, JNK, p38α), and Wnt/β-catenin signaling pathway. -
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p-Cresol sulfate-d4 potassium
0 ImagesCat. No.: HY-W654121Synonyms: p-Tolyl sulfate-d4 potassium -
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Bilobetin (Standard)
0 ImagesBilobetin (Standard) is the analytical standard of Bilobetin. This product is intended for research and analytical applications. Bilobetin, an active component of Ginkgo biloba, can reduce blood lipids and improve the effects of insulin. Bilobetin ameliorated insulin resistance, increased the hepatic uptake and oxidation of lipids, reduced very-low-density lipoprotein triglyceride secretion and blood triglyceride levels, enhanced the expression and activity of enzymes involved in β-oxidation and attenuated the accumulation of triglycerides and their metabolites in tissues. Bilobetin also increased the phosphorylation, nuclear translocation and activity of PPARα accompanied by elevated cAMP level and PKA activity. -
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