Search Result
| Isoforms Recommended: |
JNK2
|
Results for "
JNK2
" in MedChemExpress (MCE) Product Catalog:
2
Biochemical Assay Reagents
| Cat. No. |
Product Name |
Target |
Research Areas |
Chemical Structure |
-
- HY-12041
-
SP600125
Maximum Cited Publications
584 Publications Verification
|
JNK
Autophagy
Apoptosis
Ferroptosis
|
Cancer
|
|
SP600125 is an orally active, reversible, and ATP-competitive JNK inhibitor with IC50s of 40, 40 and 90 nM for JNK1, JNK2 and JNK3, respectively. SP600125 is a potent ferroptosis inhibitor. SP600125 induces the transformation of bladder cancer cells from autophagy to apoptosis [2] .
|
-
-
- HY-18982
-
|
Flagecidin; Wuningmeisu C
|
DNA/RNA Synthesis
JNK
Bacterial
Apoptosis
Antibiotic
Parasite
|
Infection
Cancer
|
|
Anisomycin is a potent protein synthesis inhibitor which interferes with protein and DNA synthesis by inhibiting peptidyl transferase or the 80S ribosome system . Anisomycin is a JNK activator, which increases phospho-JNK . Anisomycin is a bacterial antibiotic .
|
-
-
- HY-13319
-
|
JNK Inhibitor XVI
|
JNK
|
Cancer
|
|
JNK-IN-8 (JNK Inhibitor XVI) is a potent JNK inhibitor with IC50s of 4.7 nM, 18.7 nM, and 1 nM for JNK1, JNK2, and JNK3, respectively .
|
-
-
- HY-10403
-
-
-
- HY-14761
-
|
AS 602801
|
JNK
|
Cancer
|
|
Bentamapimod (AS 602801) is an ATP-competitive JNK inhibitor with IC50 of 80 nM, 90 nM, and 230 nM for JNK1, JNK2, and JNK3, respectively.
|
-
-
- HY-15617
-
|
JNK inhibitor
|
JNK
|
Cancer
|
|
JNK-IN-7 is a potent JNK inhibitor with IC50 of 1.5, 2 and 0.7 nM for JNK1, JNK2 and JNK3, respectively.
|
-
-
- HY-138304
-
|
|
JNK
|
Inflammation/Immunology
|
|
CC-90001 is a potent, selective and orally active inhibitor of c-Jun N-terminal kinase (JNK). CC-90001 shows 12.9-fold selectivity for JNK1 over JNK2 in a cell-based model. CC-90001 can be used for the research of idiopathic pulmonary fibrosis [2].
|
-
-
- HY-100115
-
-
-
- HY-139254
-
|
IDR3O; I3O
|
CDK
GSK-3
JNK
Wnt
|
Neurological Disease
|
|
Indirubin-3′-oxime (IDR3O), a synthetic derivative of indirubin, is a potent inhibitor of cyclin-dependent kinases (CDKs) and glycogen synthase kinase 3β (GSK3β). Indirubin-3′-oxime directly inhibits the activity of all three isoforms of JNK (JNK1, JNK2, and JNK3), with IC50s of 0.8 μM, 1.4 μM, and 1.0 μM, respectively. Indirubin-3′-oxime can enhance height growth via activation of Wnt/β-catenin signaling in chondrocytes [2] .
|
-
-
- HY-131249
-
|
|
MAPKAPK2 (MK2)
|
Inflammation/Immunology
|
|
MK2-IN-3 is a potent and selective inhibitor of MAPKAP-K2 (MK-2), with an IC50 of 8.5 nM. MK2-IN-3 shows selectivity for MK-2 over MK-3, MK-5, ERK2, MNK1, p38a (IC50s=0.21, 0.081, 3.44, 5.7, and >100 μM, respectively) and MSK1, MSK2, CDK2, JNK2, IKK2 (IC50s>200 μM). MK2-IN-3 can reduce TNFα production in both U937 cells and in vivo .
|
-
-
- HY-15881
-
|
JNK Inhibitor IX
|
JNK
Apoptosis
|
Cancer
|
|
TCS JNK 5a is a potent JNK3 inhibitor with a pIC50 of 6.7. TCS JNK 5a also inhibits JNK2 with a pIC50 of 6.5.
|
-
-
- HY-13275
-
|
|
IRAK
|
Inflammation/Immunology
|
|
IRAK inhibitor 1 is a potent IRAK-4 inhibitor with IC50 of 216 nM, is poorly active against JNK-1 and JNK-2 with IC50 of 3.801 μM, and >10 μM, respectively.
|
-
-
- HY-100491
-
|
|
FGFR
|
Cancer
|
|
H3B-6527 is an orally active, highly selective and covalent FGFR4 inhibitor with an IC50 of <1.2 nM. H3B-6527 has at least 250-fold selectivity over FGFR1-3 with IC50s of 320 nM, 1290 nM and 1060 nM respectively. H3B-6527 has potent anti-cancer activity .
|
-
-
- HY-112457
-
|
|
MAPKAPK2 (MK2)
|
Inflammation/Immunology
|
|
MK2-IN-3 hydrate (compound 16) is an orally active, selective, and ATP-competitive MAPKAP-K2 (MK-2) inhibitor with an IC50 of 8.5 nM.MK2-IN-3 hydrate is exceptional selectivity against MK-3 (IC50=0.21 μM), MK-5 (IC50=0.081 μM), ERK2 (IC50=3.44 μM), MNK1(IC50=5.7 μM) as well as CDK2, JNK2, IKK2, MSK1, and MSK2 .
|
-
-
- HY-151929
-
|
|
JNK
|
Neurological Disease
|
|
JNK3 inhibitor-4 is a potent and BBB-permeable inhibitor of JNK3 (IC50=1.0 nM) based on 2-aryl-1-pyrimidinyl-1H-imidazole-5-yl acetonitrile. JNK3 inhibitor-4 shows excellent selectivity over other protein kinases including isoforms JNK1 (IC50=143.9 nM) and JNK2 (IC50=298.2 nM) . JNK3 inhibitor-4 has neuroprotective effect and predicated blood-brain barrier permeability .
|
-
-
- HY-107600
-
IQ-3
2 Publications Verification
|
JNK
|
Inflammation/Immunology
|
|
IQ-3 is a specific inhibitor of the c-Jun N-terminal kinase (JNK) family, with preference for JNK3. IQ-3 exhibits Kd values of 0.24 μM, 0.29 μM and 0.066 μM for JNK1, JNK2 and JNK3, respectively .
|
-
-
- HY-100233
-
|
|
JNK
|
Inflammation/Immunology
Cancer
|
|
IQ-1S free acid is a prospective inhibitor of NF-κB/activating protein 1 (AP-1) activity with an IC50 of 2.3±0.41 μM. IQ-1S free acid has binding affinity (Kd values) in the nanomolar range for all three JNKs with Kds of 100 nM, 240 nM, and 360 nM for JNK3, JNK1, and JNK2, respectively.
|
-
-
- HY-149930
-
|
|
JNK
Apoptosis
|
Cancer
|
|
YL5084, a covalent JNK inhibitor, exhibits selectivity for JNK2 and JNK3 over JNK1 with IC50s of 70 nM, 84 nM and 2173 nM, respectively. YL5084 exhibits JNK2-independent antiproliferative effects and induces apoptosis in a JNK2-independent manner .
|
-
-
- HY-P2246
-
|
|
JNK
|
Cancer
|
|
JTP10-△-TATi TFA is a selective JNK2 peptide inhibitor, with an IC50 of 92 nM, exhibiting 10-fold selectivity for JNK2 over JNK1 and JNK3 .
|
-
-
- HY-150053
-
|
|
JNK
|
Neurological Disease
|
|
JNK-IN-11 (compound 1) is a potent JNK inhibitor with an IC50 value of 2.2, 21.4, 1.8 µM for JNK1, JNK2, JNK3, respectively. JNK-IN-11 has the potential for the research of alzheimer and parkinson disease .
|
-
-
- HY-18982R
-
|
Flagecidin (Standard); Wuningmeisu C (Standard)
|
Reference Standards
DNA/RNA Synthesis
JNK
Bacterial
Apoptosis
Antibiotic
Parasite
|
Infection
Cancer
|
|
Anisomycin (Standard) is the analytical standard of Anisomycin. This product is intended for research and analytical applications. Anisomycin is a potent protein synthesis inhibitor which interferes with protein and DNA synthesis by inhibiting peptidyl transferase or the 80S ribosome system[1]. Anisomycin is a JNK activator, which increases phospho-JNK[2][3]. Anisomycin is a bacterial antibiotic[4].
|
-
-
- HY-125838
-
|
|
JNK
|
Neurological Disease
|
|
J30-8 is a potent and isoform-selective inhibitor of c-Jun N-terminal kinase 3 (JNK3) with an IC50 of 40 nM, which 2500-fold isoform selectivity against JNK1α1 and JNK2α2. J30-8 exhibits neuroprotective activity in vitro and potential for the treatment of neurodegenerative diseases .
|
-
-
- HY-E70837
-
|
|
JNK
|
Cancer
|
|
JNK2 is a neuronal-specific isoform of JNK. JNK2 deficiency leads to reduced c-Jun degradation, thereby augmenting c-Jun levels and cellular proliferation. JNK2 Recombinant Human Active Protein Kinase is a recombinant JNK2 protein that can be used to study JNK2-related functions .
|
-
-
- HY-12862
-
|
|
Mps1
|
Cancer
|
|
Mps1-IN-7 is a potent MPS1 inhibitor (IC50 of 0.020 μM) over JNK1 and JNK2 (JNK1 IC50= 0.11 μM, JNK2 IC50=0.22 μM). Mps1-IN-7 inhibit SW620, CAL51, Miapaca-2, RMG1 cell growth with GI50 values of 0.065, 0.068, 0.25, and 0.110 μM,respectively .
|
-
-
- HY-108646
-
|
|
p38 MAPK
JNK
|
Inflammation/Immunology
|
|
SX 011 is a p38 inhibitor with IC50s of 9 nM and 90 nM against p38α and p38β, respectively. SX 011 also inhibits JNK-2 with an IC50 of 100 nM. SX-011 is orally bioavailable .
|
-
-
- HY-176213
-
|
|
JNK
|
Neurological Disease
|
|
JNK2/3-IN-1 (Compound 56d) is an irreversible covalent inhibitor of c-Jun N-terminal kinases 2/3 (JNK2/3) with IC50 values of 830 and 1909 nM, respectively. JNK2/3-IN-1 is promising for research of neurodegenerative diseases (e.g., Parkinson’s, Alzheimer’s) and fibrotic disorders .
|
-
-
- HY-13319G
-
|
JNK Inhibitor XVI
|
JNK
|
Cancer
|
|
JNK-IN-8 (JNK Inhibitor XVI) (GMP) is JNK-IN-8 (HY-13319) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. JNK-IN-8 is a potent JNK inhibitor with IC50s of 4.7 nM, 18.7 nM, and 1 nM for JNK1, JNK2, and JNK3, respectively .
|
-
-
- HY-149485
-
|
|
JNK
|
Inflammation/Immunology
|
|
JNK2-IN-1 (Compound J27) is a JNK2 inhibitor (Kds: 79.2 μM). JNK2-IN-1 has anti-inflammatory activity. JNK2-IN-1 decreases the release of TNF-α and IL-6 through inhibiting the activation of NF-κB/MAPK pathway. JNK2-IN-1 alleviates the symptoms of LPS-induced acute lung injury (ALI) and sepsis .
|
-
-
- HY-150552
-
-
-
- HY-149279
-
|
|
JNK
|
Neurological Disease
|
|
JNK3 inhibitor-7 is a potent, orally active and cross the blood-brain barrier JNK3 inhibitor with IC50 values of 53, 973, 1039 nM for JNK3, JNK2, JNK1, respectively. JNK3 inhibitor-7 shows significant neuroprotective effects. JNK3 inhibitor-7 has the potential for the research of Alzheimer’s disease (AD) .
|
-
-
- HY-178692
-
|
|
JNK
|
Neurological Disease
Inflammation/Immunology
Cancer
|
|
JNK-IN-25 is a potent and selective JNK1/2/3 inhibitor with IC50 values of 1.54 (JNK1), 1.99 (JNK2), and 0.75 nM (JNK3), respectively. JNK-IN-25 inhibits phosphorylation of c-Jun in cells via covalently bonding with the conserved cysteine of JNK1/2/3. JNK-IN-25 can be used for research of cancer, inflammatory and neurodegenerative diseases .
|
-
-
- HY-77009
-
|
|
JNK
|
Cancer
|
|
JNK-IN-13 (compound 1) is a potent and selective JNK inhibitor with IC50s of 290 nM and 500 nM for JNK3 and JNK2, respectively .
|
-
-
- HY-150688
-
|
|
JNK
|
Cancer
|
|
JAK3-IN-13 (compound 12n) is a potent, selective and orally active JAK3 inhibitor with IC50 values of 4728, 2039, 8, 365 nM for NK1, JNK2, JNK3, Tyk2, respectively. JAK3-IN-13 shows antiproliferative activity. JAK3-IN-13 induces cell cycle arrest at G0/G1 phase. JAK3-IN-13 shows antitumor activity .
|
-
-
- HY-162332
-
|
|
Apoptosis
EGFR
JNK
|
Cancer
|
|
EGFR-PK/JNK-2-IN-1 (Compound 6c) is a dual inhibitor of EGFR-PK and JNK-2 with IC50s of 2.7 and 3.0 μM, respectively. EGFR-PK/JNK-2-IN-1 can induce apoptosis and induce cell cycle arrest at different cell phases. EGFR-PK/JNK-2-IN-1 can be used for the research of cancer .
|
-
-
- HY-181812
-
|
|
JNK
p38 MAPK
Interleukin Related
TNF Receptor
|
Inflammation/Immunology
|
|
JNK2/MKK7 PPI-IN-1 is an orally active JNK2 inhibitor with an IC50 of 0.99 μM and a Kd of 81.6 μM. JNK2/MKK7 PPI-IN-1 inhibits JNK2 kinase activity, disrupts JNK2-MKK7 protein-protein interaction, and reduces c-Jun phosphorylation. JNK2/MKK7 PPI-IN-1 inhibits LPS-induced overexpression of inflammatory cytokines IL-6 and TNF-α. JNK2/MKK7 PPI-IN-1 can be used for the research of acute lung injury .
|
-
-
- HY-P2247
-
|
|
JNK
|
Cancer
|
|
JTP10-△-R9 TFA is a selective JNK2 peptide inhibitor, with an IC50 of 89 nM, exhibiting 10-fold selectivity for JNK2 over JNK1 and JNK3 .
|
-
-
- HY-168125
-
|
|
JNK
|
Cancer
|
|
JNK-IN-18 (compund 23b) is a JNK1 inhibitor with IC50 of 2 nM, compared to JNK2 and BRAF(V600E) with IC50 of 125 nM and 98 nM, respectively .
|
-
-
- HY-N7394A
-
|
D-Epigalbacin
|
JNK
|
Cancer
|
|
(-)-Zuonin A (D-Epigalbacin), a naturally occurring lignin, is a potent, selective JNKs inhibitor, with IC50s of 1.7 μM, 2.9 μM and 1.74 μM for JNK1, JNK2 and JNK3, respectively .
|
-
-
- HY-112894
-
|
|
JNK
SARS-CoV
|
Inflammation/Immunology
|
|
ZG-10 (JNK-IN-2) is a JNK inhibitor, with IC50 values of 809 nM, 1140 nM and 709 nM for JNK1, JNK2, and JNK3, respectively. ZG-10 (JNK-IN-2) is a potential anti-SARS-CoV-2 agent [2].
|
-
-
- HY-100233A
-
|
|
JNK
|
Inflammation/Immunology
Cancer
|
|
IQ-1S is a prospective inhibitor of NF-κB/activating protein 1 (AP-1) activity with an IC50 of 1.8 μM. IQ-1 has binding affinity (Kd values) in the nanomolar range for all three JNKs with Kds of 87 nM, 360 nM, and 390 nM for JNK3, JNK2, and JNK1, respectively.
|
-
-
- HY-155593
-
|
|
JNK
|
Inflammation/Immunology
|
|
JNK-1-IN-2 (Compound c6) is a JNK-1 inhibitor (IC50: 33.5 nM). JNK-1-IN-2 also inhibits JNK-2 and JNK-3 with IC50s of 112.9 nM and 33.2 nM. JNK-1-IN-2 inhibits the phosphorylation of c-Jun. JNK-1-IN-2 reverses lung impairment. JNK-1-IN-2 can be used for research of pulmonary fibrosis .
|
-
-
- HY-149280
-
|
|
JNK
|
Neurological Disease
|
|
JNK3 inhibitor-8 is a potent, delective, orally active and cross the blood-brain barrier JNK3 inhibitor with IC50 values of 21, 2203, >10000 nM for JNK3, JNK2, JNK1, respectively. JNK3 inhibitor-8 shows significant neuroprotective effects. JNK3 inhibitor-8 has the potential for the research of Alzheimer’s disease (AD) .
|
-
-
- HY-12041R
-
|
|
JNK
Autophagy
Apoptosis
Ferroptosis
|
Cancer
|
|
SP600125 (Standard) is the analytical standard of SP600125. This product is intended for research and analytical applications. SP600125 is an orally active, reversible, and ATP-competitive JNK inhibitor with IC50s of 40, 40 and 90 nM for JNK1, JNK2 and JNK3, respectively. SP600125 is a potent ferroptosis inhibitor. SP600125 induces the transformation of bladder cancer cells from autophagy to apoptosis [2] .
|
-
-
- HY-156182
-
|
|
JNK
Cytochrome P450
|
Cancer
|
|
JNK-IN-14 is a potent JNK inhibitor with IC50 values of 1.81, 12.7 and 10.5 nM for JNK1, JNK2 and JNK3, respectively. JNK-IN-14 induces early-stage apoptosis. JNK-IN-14 shows cell population arrest at the G2/M phase and slightly inhibits beclin-1 production at K562 leukemia cells relative to SP600125 (HY-12041), showing higher inhibitory ability.
|
-
-
- HY-169177
-
|
|
JNK
|
Inflammation/Immunology
|
|
JNK-1-IN-4 (Compound E1) is an inhibitor for JNK, that inhibits JNK-1, JNK-2 and JNK-3 with IC50s of 2.7, 19.0 and 9.0 nM, respectively. JNK-1-IN-4 inhibits the phosphorylation of c-Jun, and reduces the expression of TGF-β1-induced EMT marker proteins, such as fibronectin and α-SMA. JNK-1-IN-4 exhibits good pharmacokinetic characteristics with a bioavailability of 69%. JNK-1-IN-4 exhibits anti-fibrotic effect in Bleomycin (HY-17565)-induced mice idiopathic pulmonary fibrosis models .
|
-
-
- HY-151928
-
|
|
JNK
|
Neurological Disease
|
|
JNK3 inhibitor-3 (compound 15g) is a selective, BBB permeable and orally active c-Jun N-terminal kinase 3 (JNK3) inhibitor. JNK3 inhibitor-3 has inhibitory activities to JNK1, JNK2 and JNK3 with IC50 values of 147.8, 44.0 and 4.1 nM, respectively. JNK3 inhibitor-3 significantly improves the memory in mouse dementia model. JNK3 inhibitor-3 can be used for the research of Alzheimer’s disease .
|
-
-
- HY-15495B
-
|
(3S)-CC-930 hydrochloride
|
JNK
ERK
p38 MAPK
EGFR
TNF Receptor
|
Inflammation/Immunology
|
|
(3S)-Tanzisertib (hydrochloride) ((3S)-CC-930 (hydrochloride)) is an orally active JNK inhibitor (IC50 values for JNK1, JNK2, and JNK3 are 61, 7, and 6 nM, respectively). (3S)-Tanzisertib (hydrochloride) selectively inhibits ERK1, p38α, and EGFR (IC50 = 0.48, 3.4, and 0.38 μM, respectively). (3S)-Tanzisertib (hydrochloride) inhibits LPS-induced TNFα production in an acute rat PK-PD model. (3S)-Tanzisertib (hydrochloride) can be used in idiopathic pulmonary fibrosis (IPF) research .
|
-
-
- HY-169052
-
|
|
JNK
Apoptosis
|
Cardiovascular Disease
Inflammation/Immunology
|
|
Cyy-272 is an orally active JNK inhibitor with IC50 values of 1.25 μM for JNK1, 1.07 μM for JNK2, and 1.24 μM for JNK3. Cyy-272 exerts anti-inflammatory effects by inhibiting JNK phosphorylation, thereby alleviating acute lung injury (ALI) induced by lipopolysaccharide (LPS, HY-D1056). Additionally, Cyy-272 significantly reduces inflammation in cardiomyocytes and cardiac tissue induced by high lipid concentrations, further mitigating cardiac hypertrophy, fibrosis, and apoptosis. Cyy-272 can be used in the study of obese cardiomyopathy .
|
-
-
- HY-173153
-
|
|
JNK
PERK
MEK
NO Synthase
|
Inflammation/Immunology
Cancer
|
|
BRAFV600E/JNK-IN-1 (Compound 14c) is an inhibitor of JNK1, JNK2, JNK3 and BRAFV600E, with IC50 values of 0.51 μM, 0.53 μM, 1.02 μM and 0.009 μM, respectively. BRAFV600E/JNK-IN-1 can inhibit the phosphorylation of MEK1/2 and ERK1/2. In addition, BRAFV600E/JNK-IN-1 can inhibit tumor cell proliferation, NO release and PGE2 production, and has anti-tumor and anti-inflammatory activities .
|
-
-
- HY-RS08128
-
|
|
Small Interfering RNA (siRNA)
JNK
|
Others
|
|
Mapk9 Mouse Pre-designed siRNA Set A contains three designed siRNAs for Mapk9 gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.
|
-
Mapk9 Mouse Pre-designed siRNA Set A
Mapk9 Mouse Pre-designed siRNA Set A
- HY-108646R
-
|
|
Reference Standards
p38 MAPK
JNK
|
Inflammation/Immunology
|
|
SX 011 (Standard) is the analytical standard of SX 011 (HY-108646). This product is intended for research and analytical applications. SX 011 is a p38 inhibitor with IC50s of 9 nM and 90 nM against p38α and p38β, respectively. SX 011 also inhibits JNK-2 with an IC50 of 100 nM. SX-011 is orally bioavailable .
|
-
- HY-RS08127
-
|
|
Small Interfering RNA (siRNA)
JNK
|
Others
|
|
MAPK9 Human Pre-designed siRNA Set A contains three designed siRNAs for MAPK9 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.
|
-
MAPK9 Human Pre-designed siRNA Set A
MAPK9 Human Pre-designed siRNA Set A
- HY-10403R
-
|
|
Reference Standards
p38 MAPK
Autophagy
|
Inflammation/Immunology
Cancer
|
|
PH-797804 (Standard) is the analytical standard of PH-797804 (HY-10403). This product is intended for research and analytical applications. PH-797804 is a ATP-competitive, selective p38α/p38β inhibitor (IC50=26 nM and Ki=5.8 nM for p38α; Ki=40 nM for p38β) and does not inhibit JNK2.
|
-
- HY-107600R
-
|
|
Reference Standards
JNK
|
Inflammation/Immunology
|
|
IQ-3 (Standard) is the analytical standard of IQ-3 (HY-107600). This product is intended for research and analytical applications. IQ-3 is a specific inhibitor of the c-Jun N-terminal Kinase (JNK) family, with preference for JNK3. IQ-3 exhibits Kd values of 0.24 μM, 0.29 μM and 0.066 μM for JNK1, JNK2 and JNK3, respectively .
|
-
- HY-12041G
-
|
|
JNK
Autophagy
Apoptosis
Ferroptosis
|
Cancer
|
|
SP600125 (GMP) is SP600125 (HY-12041) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. SP600125 is an orally active, reversible, and ATP-competitive JNK inhibitor with IC50s of 40, 40 and 90 nM for JNK1, JNK2 and JNK3, respectively. SP600125 is a potent ferroptosis inhibitor. SP600125 induces the transformation of bladder cancer cells from autophagy to apoptosis [2] .
|
-
- HY-100233R
-
|
|
JNK
Reference Standards
|
Inflammation/Immunology
Cancer
|
|
IQ-1S (free acid) (Standard) is the analytical standard of IQ-1S (free acid) (HY-100233). This product is intended for research and analytical applications. IQ-1S free acid is a prospective inhibitor of NF-κB/activating protein 1 (AP-1) activity with an IC50 of 2.3±0.41 μM. IQ-1S free acid has binding affinity (Kd values) in the nanomolar range for all three JNKs with Kds of 100 nM, 240 nM, and 360 nM for JNK3, JNK1, and JNK2, respectively.
|
-
- HY-100491R
-
|
|
FGFR
Reference Standards
|
Cancer
|
|
H3B-6527 (Standard) is the analytical standard of H3B-6527 (HY-100491). This product is intended for research and analytical applications. H3B-6527 is an orally active, highly selective and covalent FGFR4 inhibitor with an IC50 of <1.2 nM. H3B-6527 has at least 250-fold selectivity over FGFR1-3 with IC50s of 320 nM, 1290 nM and 1060 nM respectively. H3B-6527 has potent anti-cancer activity .
|
-
- HY-181993
-
|
|
JNK
Cadherin
Collagen
PAI-1
|
Endocrinology
|
|
JNK3-IN-11 is a selective JNK3 inhibitor with an IC50 of 2.08 nM. JNK3-IN-11 binds to the JNK3 ATP-binding pocket, forming conserved hydrogen bonds with Met149 and a water-mediated hydrogen bond with Lys93. JNK3-IN-11 suppresses TGF-β1-induced c-Jun phosphorylation, reduces profibrotic markers COL1A1 and PAI-1, restores E-cadherin expression, and has protection against podocyte injure. JNK3-IN-11 can be used for the research of chronic kidney disease .
|
-
- HY-171296
-
|
|
p38 MAPK
JNK
|
Inflammation/Immunology
|
|
p38 Kinase inhibitor 8 (Compound CCLXXVIII) is the orally active inhibitor for p38β and JNK2α2 with IC50s of 6.3 nM and 53.6 nM. p38 Kinase inhibitor 8 exhibits anti-inflammatory effect in rats collagen-induced arthritis models .
|
-
- HY-181556
-
|
|
JNK
TGF-beta/Smad
Cadherin
|
Inflammation/Immunology
|
|
JNK3-IN-10 is a blood-brain barrier-impermeable JNK3 inhibitor (IC50=0.257 nM) with over 400-fold selectivity over JNK1. JNK3-IN-10 blocks the JNK3-mediated signaling pathway downstream of TGF-β1, inhibits TGF-β1-induced phosphorylation of c-Jun, reduces the expression of pro-fibrotic markers, and restores the expression of the epithelial protein E-cadherin. JNK3-IN-10 exhibits low cytotoxicity, anti-fibrotic, cytoprotective and renoprotective effects, and alleviates albuminuria, glomerulosclerosis and podocyte foot process fusion. JNK3-IN-10 can be used for the research of chronic kidney disease, glomerulosclerosis and adriamycin-induced nephropathy .
|
-
- HY-100115R
-
|
|
p38 MAPK
Reference Standards
Autophagy
|
Cardiovascular Disease
Inflammation/Immunology
Cancer
|
|
TA-02 (Standard) is the analytical standard of TA-02 (HY-100115). This product is intended for research and analytical applications. TA-02, an analog of SB 203580 (HY-10256), is a p38 MAPK inhibitor with an IC50 of 20 nM. TA-02 especially inhibits TGFBR-2. TA-02 exhibits similar cardiogenic properties as SB 203580 and SB 202190 (HY-10295) .
|
-
| Cat. No. |
Product Name |
Type |
-
- HY-13319G
-
|
JNK Inhibitor XVI
|
Fluorescent Dyes
|
|
JNK-IN-8 (JNK Inhibitor XVI) (GMP) is JNK-IN-8 (HY-13319) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. JNK-IN-8 is a potent JNK inhibitor with IC50s of 4.7 nM, 18.7 nM, and 1 nM for JNK1, JNK2, and JNK3, respectively .
|
-
- HY-12041G
-
|
|
Fluorescent Dyes
|
|
SP600125 (GMP) is SP600125 (HY-12041) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. SP600125 is an orally active, reversible, and ATP-competitive JNK inhibitor with IC50s of 40, 40 and 90 nM for JNK1, JNK2 and JNK3, respectively. SP600125 is a potent ferroptosis inhibitor. SP600125 induces the transformation of bladder cancer cells from autophagy to apoptosis [2] .
|
| Cat. No. |
Product Name |
Type |
-
- HY-13319G
-
|
JNK Inhibitor XVI
|
Biochemical Assay Reagents
|
|
JNK-IN-8 (JNK Inhibitor XVI) (GMP) is JNK-IN-8 (HY-13319) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. JNK-IN-8 is a potent JNK inhibitor with IC50s of 4.7 nM, 18.7 nM, and 1 nM for JNK1, JNK2, and JNK3, respectively .
|
-
- HY-12041G
-
|
|
Biochemical Assay Reagents
|
|
SP600125 (GMP) is SP600125 (HY-12041) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. SP600125 is an orally active, reversible, and ATP-competitive JNK inhibitor with IC50s of 40, 40 and 90 nM for JNK1, JNK2 and JNK3, respectively. SP600125 is a potent ferroptosis inhibitor. SP600125 induces the transformation of bladder cancer cells from autophagy to apoptosis [2] .
|
| Cat. No. |
Product Name |
Target |
Research Area |
-
- HY-P2246
-
|
|
JNK
|
Cancer
|
|
JTP10-△-TATi TFA is a selective JNK2 peptide inhibitor, with an IC50 of 92 nM, exhibiting 10-fold selectivity for JNK2 over JNK1 and JNK3 .
|
-
- HY-P2247
-
|
|
JNK
|
Cancer
|
|
JTP10-△-R9 TFA is a selective JNK2 peptide inhibitor, with an IC50 of 89 nM, exhibiting 10-fold selectivity for JNK2 over JNK1 and JNK3 .
|
| Cat. No. |
Product Name |
Category |
Target |
Chemical Structure |
| Cat. No. |
Product Name |
|
Classification |
-
- HY-RS08128
-
|
|
|
siRNAs
Mouse Pre-designed siRNA Sets
|
|
Mapk9 Mouse Pre-designed siRNA Set A contains three designed siRNAs for Mapk9 gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.
|
-
- HY-RS08127
-
|
|
|
siRNAs
Human Pre-designed siRNA Sets
|
|
MAPK9 Human Pre-designed siRNA Set A contains three designed siRNAs for MAPK9 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.
|
| Cat. No. |
Product Name |
Target |
Research Areas |
Chemical Structure |
-
- HY-13319G
-
|
JNK Inhibitor XVI
|
JNK
|
Cancer
|
|
JNK-IN-8 (JNK Inhibitor XVI) (GMP) is JNK-IN-8 (HY-13319) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. JNK-IN-8 is a potent JNK inhibitor with IC50s of 4.7 nM, 18.7 nM, and 1 nM for JNK1, JNK2, and JNK3, respectively .
|
-
-
- HY-12041G
-
|
|
JNK
Autophagy
Apoptosis
Ferroptosis
|
Cancer
|
|
SP600125 (GMP) is SP600125 (HY-12041) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. SP600125 is an orally active, reversible, and ATP-competitive JNK inhibitor with IC50s of 40, 40 and 90 nM for JNK1, JNK2 and JNK3, respectively. SP600125 is a potent ferroptosis inhibitor. SP600125 induces the transformation of bladder cancer cells from autophagy to apoptosis [2] .
|
-
Your information is safe with us. * Required Fields.
Inquiry Information
- Product Name:
- Cat. No.:
- Quantity:
- MCE Japan Authorized Agent: