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Caspase Related Products (1404)
Related Products (1404)
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Recombinant Proteins (10)
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Antibodies (35)
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Caspase Signaling Pathway
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Caspase Isoform Comparison
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PRX-08066 maleate
0 ImagesCat. No.: HY-15472ACAS No.: 866206-55-5PRX-08066 maleate is a selective and orally active 5-hydroxytryptamine receptor 2B (5-HT2BR) antagonist with a Ki of 3.4 nM. PRX-08066 maleate inhibits the MAPK pathway, 5-HT release and fibrotic factor (TGFβ1, CTGF and FGF2) expression. PRX-08066 maleate inhibits the proliferation of KRJ-I cells and induces apoptosis (caspase-3 activation). PRX-08066 maleate inhibits pulmonary vascular remodeling. PRX-08066 maleate can be used of pulmonary Arterial Hypertension (PAH) and neuroendocrine tumor (NET). -
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IETD-CHO
0 ImagesCat. No.: HY-P4222CAS No.: 886462-83-5Synonyms: Caspase-8-IN-1IETD-CHO (Caspase-8-IN-1) is a potent caspase-8 inhibitor. -
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Casp8 Rat Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS01967Casp8 Rat Pre-designed siRNA Set A contains three designed siRNAs for Casp8 gene (Rat), as well as a negative control, a positive control, and a FAM-labeled negative control.
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Neuroprotective agent 15
0 ImagesCat. No.: HY-178943CAS No.: 2476614-40-9Neuroprotective agent 15 (Compound 3e) is a neuroprotective agent. Neuroprotective agent 15 is a selective butyrylcholinesterase (BChE) inhibitor, with IC50 values of 2.6 and 114.3 μM for BChE and AChE respectively. Neuroprotective agent 15 has cannabinoid CB2 receptor (CB2 receptor) agonistic activity. Neuroprotective agent 15 can reduce cell death, LDH release and Caspase-3/7 activity, and inhibit apoptosis. Neuroprotective agent 15 can reduce the formation of superoxide free radicals, maintain cell morphology, and significantly lower oxidative stress levels. Neuroprotective agent 15 can be used in the research of neurodegenerative diseases, such as Alzheimer's disease and Parkinson's disease. -
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IDN-7314
0 ImagesCat. No.: HY-111096CAS No.: 254750-11-3IDN-7314 is a pan-Caspase inhibitor with an IC50 of 0.2-7 nM against all tested Caspases. IDN-7314 abrogates Jo2-induced caspase-3/7 activity. IDN-7314 reduces the procoagulant activity of tissue factor in hepatocytes. IDN-7314 is applicable to research related to chemically induced hepatitis, fulminant liver failure and apoptotic liver injury. -
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WP-1034
0 ImagesCat. No.: HY-111275CAS No.: 857064-42-7WP-1034 is a JAK-STAT inhibitor with proapoptotic and antileukemic activity in acute myeloid leukemia (AML). WP-1034 blocks activation of Stat 3 and 5. WP-1034 induces cell cycle arrest and triggers apoptosis. WP-1034 can be used for AML research. -
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NLRP3-IN-91
0 ImagesCat. No.: HY-183296NLRP3-IN-91 is a potent NLRP3 inflammasome inhibitor with a Kd of 558.4 nM. NLRP3-IN-91 directly targets the NLRP3 NACHT domain, blocks inflammasome assembly and activation, and exerts anti-inflammatory effects. NLRP3-IN-91 increases survival time in a murine model of LPS (HY-D1056)-induced sepsis. NLRP3-IN-91 can be used for the research of sepsis. -
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CASP6 Rat Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS01961CASP6 Rat Pre-designed siRNA Set A contains three designed siRNAs for CASP6 gene (Rat), as well as a negative control, a positive control, and a FAM-labeled negative control.
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Troponin-IN-1
0 ImagesCat. No.: HY-175640Troponin-IN-1 is a troponin inhibitor. Troponin-IN-1 protects OGD/R-injured H9c2 cardiomyocytes by reducing LDH leakage, pyroptosis and ROS accumulation. Troponin-IN-1 inhibits NO production and IL-1β/TNF-α/IL-18 release in LPS (HY-D1056)-induced RAW264.7 cells. Troponin-IN-1 acts via caspase-1/GSDMD/IL-18 pathway. Troponin-IN-1 reduces myocardial infarct size in LAD-induced myocardial ischemia/reperfusion (MI/R) male rats. Troponin-IN-1 can be used for the study of myocardial ischemia/reperfusion (MI/R) injury. -
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20-5,14-HEDE-d2-2
0 ImagesCat. No.: HY-160099S2Synonyms: WIT003-d2-220-5,14-HEDE-d2 (WIT003-d2) is the deuterated-labeled 20-5,14-HEDE (HY-160099). 20-5,14-HEDE (WIT003) is an analog of 20-HETE. 20-5,14-HEDE activates PI3K/Akt signaling pathway, thereby exhibiting anti-apoptotic and cell survival promoting effects. 20-5,14-HEDE is the agonist for 20-HETE that increases intracellular Ca2+ concentrations, thereby enhancing vasoconstriction. -
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MR-39
0 ImagesCat. No.: HY-184654CAS No.: 2169267-60-9MR-39 is a FPR2 agonist (EC50 = 3.9 μM). MR-39 activates FPR2 to promote neuroinflammation resolution (downregulates IL-1β and TNF-α, modulates NF-κB), upregulates synaptic proteins (synaptic proteins) and improves dendritic spine morphology. MR-39 inhibits MAPK/ERK and AKT phosphorylation in glioblastoma, induces S-phase arrest, and suppresses migration, angiogenesis, and hypoxic adaptation. MR-39 reduces Aβ plaque burden via inhibiting MyD88/NF-κB and NLRP3 inflammasome. MR-39 can be used for research on autism spectrum disorder, Alzheimer's disease, and glioblastoma. -
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Wedelolactone (Standard)
0 ImagesWedelolactone (Standard) is the analytical standard of Wedelolactone. This product is intended for research and analytical applications. Wedelolactone suppresses LPS-induced caspase-11 expression by directly inhibits the IKK Complex. Wedelolactone also inhibits 5-lipoxygenase (5-Lox) with an IC50 of 2.5 μM. Wedelolactone induces caspase-dependent apoptosis in prostate cancer cells via downregulation of PKCε without inhibiting Akt. Wedelolactone can extract from Eclipta alba, and it can be used for the research of cancer. -
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Oxoglaucine
0 ImagesOxoglaucine (O-Methylatheroline) is a natural product with multiple activities including autophagy activation, anti-inflammation, antibacterial activity, and immunoregulation. Oxoglaucine inhibits the TRPV5/calmodulin/CAMK-II pathway, suppresses TGFβ-induced Smad2 phosphorylation by upregulating Smad7, blocks Ca2+ influx, activates autophagy, alleviates apoptosis and inflammation, inhibits ROS production and the expression of fibrosis markers in hepatocytes, and regulates immune cell populations and responses. Oxoglaucine protects against infections caused by Candida albicans and Klebsiella pneumoniae, and exerts effects on adjuvant-induced arthritis. Oxoglaucine can be used in studies related to arthritis, liver fibrosis, bacterial infections, and fungal infections. -
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TRP-601
0 ImagesCat. No.: HY-P2012CAS No.: 1094569-02-4TRP-601 is a caspase inhibitor. TRP-601 reversed the increased expression of active caspase-2, the activation of endogenous apoptotic pathway and the up-regulation of key protein triggered by hyperoxia. -
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BD-AcAc2
0 ImagesSynonyms: R,S-1,3-Butanediol acetoacetate diesterBD-AcAc2 (R,S-1,3-Butanediol acetoacetate diester) is an orally active, CNS-penetrant antiepileptic agent. BD-AcAc2 inhibits NF-κB, NLRP3 inflammasome, caspase-1/3, pyroptosis, apoptosis, and enhances autophagy. BD-AcAc2 exhibits antioxidant activity by modulating ROS, MDA, SOD, and GSH levels, and alleviates oxidative stress. BD-AcAc2 mitigates chronic colitis, counteracts Dextran Sodium Sulfate (DSS)-induced pathology, protects against central nervous system oxygen toxicity and acute lung injury, and exhibits anti-seizure efficacy. BD-AcAc2 can be used for the research of colitis, sarcopenia, acute lung injury, seizure, and obesity. -
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- Biotin-DEVD-CHO TFA
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- Sarglaroids F
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Chelidonic acid (Standard)
0 ImagesChelidonic acid (Standard) is the analytical standard of Chelidonic acid. This product is intended for research and analytical applications. Chelidonic acid is a component of Chelidonium majus L., used as an antimicrobial. Chelidonic acid also shows anti-inflammatory activity. Chelidonic acid has potential to inhibit IL-6 production by blocking NF-κB and caspase-1. Chelidonic acid is a glutamate decarboxylase inhibitor, with a Ki of 1.2 μM. -
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NWL-117
0 ImagesCat. No.: HY-125194CAS No.: 2267318-43-2NWL-117 is a brain-penetrant and highly selective Caspase-6 (Casp6) inhibitor with an IC50 value of 192 nM. NWL-117 is promising for research of neurodegenerative diseases, particularly Alzheimer's disease and Huntington's disease . -
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TBC1D2-IN-1
0 ImagesCat. No.: HY-183772TBC1D2-IN-1 is a potent orally active and selective TBC1D2 inhibitor with a Kd of 1.1 μM. TBC1D2-IN-1 selectively inhibits TBC1D2-mediated GTP hydrolysis on RAB7A-GTP, promotes RAB7A accumulation on lysosomal membranes, and induces apoptosis and autophagy. TBC1D2-IN-1 exerts selective antiproliferative activity cancer cells. TBC1D2-IN-1 can be used for the research of cervical carcinoma. -
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Upon binding to their cognate ligand, death receptors such as Fas and TRAILR can activate initiator Caspases (Pro-caspase 8 and Pro-caspase 10) through dimerization mediated by adaptor proteins such as FADD and TRADD. Active Caspase 8 and Caspase 10 then cleave and activate the effector Caspase 3, 6 and 7, leading to apoptosis. ROS/DNA damage and ER stress trigger Caspase 2 activation. Active Caspase 2 cleaves and activates Caspase 3 and initiates apoptosis directly. Caspase 2, 8 and 10 can also cleave Bid, stimulate mitochondrial outer membrane permeabilization (MOMP) and initiate the intrinsic apoptotic pathway. Following MOMP, mitochondrial intermembrane space proteins such as Smac and Cytochrome C are released into the cytosol. Cytochrome C interacts with Apaf-1, triggering apoptosome assembly, which activates Caspase 9. Active Caspase 9, in turn, activates Caspase 3, 6 and 7, leading to apoptosis. Mitochondrial release of Smac facilitates apoptosis by blocking the inhibitor of apoptosis (IAP) proteins.
Following the binding of TNF to TNFR1, TNFR1 binds to TRADD, which recruits RIPK1, TRAF2/5 and cIAP1/2 to form TNFR1 signaling complex I. Formation of the complex IIa and complex IIb is initiated either by RIPK1 deubiquitylation mediated by CYLD or by RIPK1 non-ubiquitylation due to depletion of cIAPs. The Pro-caspase 8 homodimer in complex IIa and complex IIb generates active Caspase 8. This active Caspase 8 in the cytosol then carries out cleavage reactions to activate downstream executioner caspases and thus induce classical apoptosis[1][2].
Reference:
[1]. Thomas C, et al. Caspases in retinal ganglion cell death and axon regeneration. Cell Death Discovery volume 3, Article number: 17032 (2017).
[2]. Brenner D, et al. Regulation of tumour necrosis factor signalling: live or let die. Nat Rev Immunol. 2015 Jun;15(6):362-74.
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