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Caspase Related Products (1380)
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Caspase Isoform Comparison
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Tauroursodeoxycholate dihydrate (Standard)
0 ImagesSynonyms: Tauroursodeoxycholic acid dihydrate (Standard); TUDCA dihydrate (Standard); UR 906 dihydrate (Standard)Tauroursodeoxycholate (dihydrate) (Standard) is the analytical standard of Tauroursodeoxycholate (dihydrate). This product is intended for research and analytical applications. Tauroursodeoxycholate (Tauroursodeoxycholic acid; TDUCA) dihydrate is an endoplasmic reticulum (ER) stress inhibitor. Tauroursodeoxycholate significantly reduces expression of apoptosis molecules, such as caspase-3 and caspase-12. Tauroursodeoxycholate also inhibits ERK. -
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DPQZ
0 ImagesCat. No.: HY-116664CAS No.: 1431362-93-4 -
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NCP26
0 ImagesCat. No.: HY-183004CAS No.: 2396683-89-7NCP26 is an ATP-competitive ProRS inhibitor (with a KD of 271 nM in the absence of proline, and a KD of 0.35 nM in the presence of 100 μM proline). NCP26 activates AAR, induces G0/G1 phase arrest, Apoptosis, Caspase cleavage, and PARP cleavage. NCP26 downregulates MYC, TCF3, and CCND1. NCP26 inhibits the growth of multiple myeloma cells. NCP26 can be used for the research of multiple myeloma. -
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TASIN-1 hydrochloride
0 ImagesCat. No.: HY-116572CAS No.: 1678515-13-3TASIN-1 hydrochloride is a selective inhibitor of truncated APCTR (adenomatous polyposis coli gene) that exerts cytotoxic effects by inhibiting cholesterol biosynthesis. TASIN-1 hydrochloride specifically targets colorectal cancer (CRC) cells carrying APC truncated mutations, while having no significant toxicity to wild-type APC cells. TASIN-1 hydrochloride exerts cytotoxic effects by targeting Emopamil binding protein (EBP) to inhibit cholesterol biosynthesis, triggering endoplasmic reticulum (ER) stress, reactive oxygen species (ROS) generation, and JNK-mediated apoptosis, and inhibiting Akt survival signaling. TASIN-1 hydrochloride can be used to prevent and intervene in APC mutant colorectal cancer. -
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Orsellinic acid (Standard)
0 ImagesOrsellinic acid (Standard) is an analytical standard of Orsellinic acid (HY-N3126). This product is intended for research and analytical applications. Orsellinic acid is a Benzoic acid (HY-N0216) derivative. Orsellinic acid can be isolated from Chaetomium globosum endophytic on Ephedra fasciculata (Mormon tea). Orsellinic acid blocks PAF-mediated Apoptosis, inhibits caspase-3/7 activation, and PARP cleavage. Orsellinic acid can be used in research of neurons and various tumors (non-small cell lung cancer, breast cancer, neuroblastoma, pancreatic cancer). -
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Neosolaniol (Standard)
0 ImagesCat. No.: HY-N6799RCAS No.: 36519-25-2Neosolaniol (Standard) is the analytical standard of Neosolaniol (HY-N6799). This product is intended for research and analytical applications. Neosolaniol is an orally active type A trichothecene mycotoxin, and it is a metabolite of T-2 Toxin (HY-N6792) in human cancer cells and renal epithelial cells. Neosolaniol targets Bax, Bcl-2, caspase 3, caspase 8, and cytochrome c, thereby inducing apoptosis, emesis and anorexia. Neosolaniol reduces intracellular ATP levels, elevates ROS levels, decreases mitochondrial membrane potential, induces mitochondrial damage, and exerts toxicity on Leydig cells. Neosolaniol downregulates the expression of intestinal tight junction proteins in broilers and increases the load of Salmonella enteritidis in the cecum of broilers. Neosolaniol can be used in research related to anorexia, lymphoma, Fusarium melonis rot, and Salmonella infection. -
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Prosultiamine
0 ImagesProsultiamine is an allithiamine homolog. Prosultiamine can disrupt intracellular redox reactions, inducing caspase-dependent apoptosis in HTLV-1 infected cells. Prosultiamine can be used in studies involving lower urinary tract dysfunction associated with human T-lymphotropic virus type 1-related myelopathy/tropical spastic paraparesis. -
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N1,N11-Diethylnorspermine tetrahydrochloride (Standard)
0 ImagesSynonyms: Diethylnorspermine tetrahydrochloride (Standard); DENSPM tetrahydrochloride (Standard); BENSPM tetrahydrochloride (Standard)N1,N11-Diethylnorspermine (tetrahydrochloride) (Standard) is the analytical standard of N1,N11-Diethylnorspermine (tetrahydrochloride). This product is intended for research and analytical applications. N1, N11-Diethylnorspermine tetrahydrochloride (DENSPM tetrahydrochloride) is a potent anticancer agent. N1,N11-Diethylnorspermine tetrahydrochloride activates polyamine catabolism and downregulates mTOR protein. N1,N11-Diethylnorspermine tetrahydrochloride induces the release of cytochrome c from mitochondria, resulting in activation of caspase 3. N1,N11-Diethylnorspermine tetrahydrochloride kills glioblastoma multiforme (GBM) through induction of SSAT (spermidine/spermine N1-acetyltransferase) coupled with H2O2 production. -
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N-Hydroxyphthalimide (Standard)
0 ImagesN-Hydroxyphthalimide (Standard) is the analytical standard of N-Hydroxyphthalimide (HY-Y0396). This product is intended for research and analytical applications. N-Hydroxyphthalimide is a blocking agent and catalyst. N-Hydroxyphthalimide promotes oxidation reactions by generating PINO free radicals and activating hydrogen atom transfer processes. N-Hydroxyphthalimide reduces the expression of anti-apoptotic proteins Survivin and Bcl-xL and activates caspase 9 and caspase 3. N-Hydroxyphthalimide induces Apoptosis. N-Hydroxyphthalimide inhibits the phosphorylation of mTOR (Ser2448, Ser2481) and Akt (Ser473). N-Hydroxyphthalimide has anticancer effects against breast and colon cancer. -
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Deltamethrin-d6
0 ImagesCat. No.: HY-B1971S1CAS No.: 2483831-10-1Synonyms: Decamethrin-d6Deltamethrin-d6 (Decamethrin-d6) is deuterium labeled Deltamethrin. Deltamethrin (Decamethrin) is an orally active synthetic pyrethroid insecticide. Deltamethrin induces oxidative stress and results in inflammation and apoptosis via inhibiting Nrf2/HO-1 pathway. Deltamethrin has an anticancer effect by inducing apoptosis. Deltamethrin can be used extensively in pest control. -
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β-Carotene-15,15'-epoxide
0 ImagesCat. No.: HY-N15378CAS No.: 132541-62-9β-carotene-15,15ʹ-epoxide is a XIAP antagonist with apoptosis-inducing and antitumor activity, found in the leaves of Spondias mombin. In a DMBA (HY-W011845)-induced rat model of breast cancer, β-carotene-15,15ʹ-epoxide binds to the BIR3 domain of the anti-apoptotic protein XIAP, blocking its interaction with caspase-9 and thereby promoting tumor cell apoptosis. In addition, β-carotene-15,15ʹ-epoxide significantly downregulates the expression of BCL-2, COX-2, and TNF-α in tumor tissues, reduces MDA levels, increases catalase activity, and modulates serum levels of LDH, ALP, and ALT, demonstrating strong antioxidant, anti-inflammatory, and metabolic protective effects. β-carotene-15,15ʹ-epoxide may be used in research on inflammation-related conditions and cancers such as breast cancer. -
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STA-1474 sodium
0 ImagesCat. No.: HY-13752BCAS No.: 1402907-09-8STA-1474 sodium is an orally active and highly selective HSP90 inhibitor, as well as a phosphate prodrug of the HSP90 inhibitor STA-9090 (HY-15205). STA-1474 sodium disrupts the chaperone function of HSP90 and promotes the degradation of client proteins. STA-1474 sodium inhibits the phosphorylation of Met, Akt and STAT3, thereby blocking related signaling pathways. STA-1474 sodium induces apoptosis and inhibits proliferation of osteosarcoma cells, and triggers the up-regulation of HSP70 and HSP90. STA-1474 sodium induces tumor regression and caspase-3 activation in mouse osteosarcoma xenograft models. STA-1474 sodium can be used in the research of osteosarcoma. -
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Almorexant hydrochloride (Standard)
0 ImagesCat. No.: HY-10805ARCAS No.: 913358-93-7Synonyms: ACT 078573 hydrochloride (Standard)Almorexant hydrochloride (Standard) is the analytical standard of Almorexant (hydrochloride) (HY-10805A). This product is intended for research and analytical applications. Almorexant (ACT 078573) hydrochloride is an orally active, potent and competitive dual orexin receptor antagonist, with Kd values of 1.3 nM (OX1) and 0.17 nM (OX2), respectively. Almorexant hydrochloride reversibly blocks signaling of orexin-A and orexin-B peptides. Almorexant hydrochloride totally blocked the intracellular Ca2+ signal pathway. Almorexant hydrochloride stimulates caspase-3 activity in AsPC-1 cells and induces apoptosis. -
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Diuvaretin
0 ImagesCat. No.: HY-N13034CAS No.: 61463-04-5Diuvaretin is an antimalarial agent and a C-phenylated dihydrochalcone. Diuvaretin can be isolated from the roots of U. acuminata. Diuvaretin increases the activity of Caspase-3 and triggers Apoptosis. Diuvaretin exhibits antiparasitic activity against Plasmodium falciparum. Diuvaretin can be used in the research of promyelocytic leukemia and malaria. -
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Linichlorin A
0 ImagesCat. No.: HY-126757CAS No.: 62462-98-0Linichlorin A is a p27Kip1 ubiquitination inhibitor that blocks p27Kip1 degradation by inhibiting the Skp2-Cks1–p27Kip1 interaction. Linichlorin A shows selective antiproliferative activity against tumor cells. Linichlorin A induces apoptosis in leukemia cells via cytochrome c release, caspase activation and PARP cleavage. Linichlorin A can be used in the study of leukemia, melanoma, cervical cancer and breast cancer. -
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Amsacrine lactate
0 ImagesCat. No.: HY-13551DCAS No.: 80277-11-8Synonyms: m-AMSA lactate; Acridinyl anisidide lactateAmsacrine lactate (m-AMSA lactate) is a Topoisomerase II inhibitor. Amsacrine lactate intercalates into DNA. Amsacrine lactate induces Ca2+-mediated inactivation of ERK, and also downregulates AKT, promoting MCL1 downregulation mediated by GSK3β via reducing the phosphorylation level of GSK3β. Amsacrine lactate induces Apoptosis by activating Caspase-9 and Caspase-3. Amsacrine lactate blocks HERG potassium channels in the open/inactivated state. Amsacrine lactate induces chromosomal aberrations and sister chromatid exchanges, and inhibits the synthesis of RNA and DNA. Amsacrine lactate exhibits anti-leukemic activity. Amsacrine lactate causes cardiac repolarization disorders, QT interval prolongation, ventricular arrhythmias, and increases the risk of sudden cardiac death. Amsacrine lactate can be used in research related to acute myeloid leukemia, lymphoma and progressive malignancies. -
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- 2-HBA (Standard)
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Acanthoic acid
0 ImagesCat. No.: HY-116136CAS No.: 119290-87-8Synonyms: NP1302Acanthoic acid (NP1302) is an orally active pimarane-type diterpenoid. Acanthoic acid is isolated from the root bark of Araliaceae family plant Eleutherococcus senticosus (Siberian ginseng). Acanthoic acid activates LXR and FXR. Acanthoic acid activates the AMPK-LKB1, SIRT1, and p38 MAPK signaling pathways and increases the phosphorylation level of ACC. Acanthoic acid downregulates the expression of SREBP-1, CYP2E1, HIF-1α, and PPARγ, and upregulates the expression of PPARα. Acanthoic acid induces Apoptosis by activating Caspase-3, promoting PARP cleavage, and downregulating Bcl-xL. Acanthoic acid exhibits antioxidant, anti-fibrotic, and hepatoprotective effects. It reduces lipid accumulation and lipogenesis. Acanthoic acid is used in studies on non-alcoholic fatty liver disease, alcoholic liver disease, acute promyelocytic leukemia, and Acetaminophen-induced hepatotoxicity. -
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Sulfabenzamide (Standard)
0 ImagesSulfabenzamide (N-Sulfanilylbenzamide) (Standard) is the analytical standard of Sulfabenzamide (HY-B0960). This product is intended for research and analytical applications. Sulfabenzamide is a sulfonamide antibacterial agent. Sulfabenzamide exhibit antibacterial activity against Staphylococcus aureus (ATCC 25923) and Escherichia coli (ATCC 8739). Sulfabenzamide can promote autophagic cell autophagy in breast cancer cells through p53/ DRAM pathway. Sulfabenzamide increases caspase-3 activity, deactivates PARP1 and DNA-PK, downregulates AKT1 and AKT2. Sulfabenzamide can be used for the researches of breast cancer and bacterial infections. -
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Periplogenin (Standard)
0 ImagesPeriplogenin (Standard) is the analytical standard of Periplogenin (HY-N2414). Periplogenin is an orally active cardiac glycoside found in Cortex periplocae. Periplogenin can induce ROS production and necroptosis and cause G0/G1 phase arrest. Periplogenin can inhibit pyroptosis by regulating the NLRP3/Caspase-1/GSDMD signaling. Periplogenin suppresses growth of prostate carcinoma cells by docking to an ATP1A1 protein pocket and forming a hydrogen bond with T804. Periplogenin can be used for the researches of cancer, inflammation and immunology, such as prostate carcinoma, rheumatoid arthritis and psoriasis. -
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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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