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| Cat. No. | Product Name | Field of Application | Chemical Structure |
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| DC81419 | PXS 64 |
PXS 64, a mannose-6-phosphate (M6P) analogue. a lipophilic prodrug of PXS 25. PXS 64 is an effective anti-fibrotic agent by inhibiting the activation of latent TGF-β1. PXS64, inhibits fibrosis via TGF-β1 pathway in human lung fibroblasts. PXS 64 reduces TGFβ-mediated collagen IV, fibronectin, MCP-1, and phospho-smad2 expression in kidney cells. PXS 64 reduces collagen deposition in dermal scar fibroblasts. PXS 64 can be used for the research of chronic kidney disease, idiopathic pulmonary fibrosis, scarring.
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| DC81418 | PXS 25 |
PXS 25 is a cation-independent mannose 6-phosphate receptor (CI-M6PR) inhibitor that inhibits CI-M6PR-mediated activation of latent TGF-β1. PXS 25 inhibits conversion of high glucose-induced latent TGF-β1 to active TGF-β1 in proximal tubule cells under normoxic conditions. PXS 25 suppresses high glucose-induced fibronectin, collagen IV production, and phosphorylated Smad 2 in proximal tubule cells under normoxic conditions. PXS 25 has antifibrotic properties in skin fibroblasts. PXS 25 can be used for the research of diabetic nephropathy.
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| DC81400 | PROTAC TEAD degrader-2 |
PROTAC TEAD degrader-2 (Compound 31) is an efficient TEAD1 PROTAC degrader with a DC50 of 0.6 nM. PROTAC TEAD degrader-2 inhibits the YAP/TAZ-TEAD interaction, with a IC50 of 1.8 nM. PROTAC TEAD degrader-2 exhibits significant selective inhibitory activity against YAP-dependent cancer cells and effectively suppresses the transcriptional activity mediated by YAP. PROTAC TEAD degrader-2 can be used for research on mesothelioma and glioma.
(Pink: TEAD1 ligand ; Blue: Cereblon ligand ; Black: linker ).
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| DC81379 | PROTAC HMGCR Degrader-1 |
PROTAC HMGCR Degrader-1 is an orally active HMGCR PROTAC degrader with IC50 of 1.32 μM. PROTAC HMGCR Degrader-1 is a lactone prodrug of PROTAC HMGCR Degrader-2. PROTAC HMGCR Degrader-1 achieves high plasma exposure of the active ingredient leading to robust HMGCR degradation and demonstrating promising cholesterol-lowering efficacy in vivo. PROTAC HMGCR Degrader-1 can be used for hyperlipidemia research.
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| DC81348 | PROTAC EGFR degrader 16 |
PROTAC EGFR degrader 16 (Compound 98) a selective EGFR PROTAC degrader with DC50 values of < 50 nM in NCI-H1975 (EGFR L858R-T970M), NCI-H3225 (EGFR L858R) and NCI-H1976 + CS (EGFR L858R-T970M-L797S). PROTAC EGFR degrader 16 can be used for the study of EGFR-driven cancerssuch as non-small cell lung cancer (Pink: EGFR ligand; Blue: CRBN ligand; Black: Linker; EGFR ligand + Linker).
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| DC81321 | PRMT5-IN-55 |
PRMT5-IN-55 is an inhibitor of PRMT5 with a pIC50 value of 9.6 at a 10 nM enzyme.
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| DC81285 | PI3K/PIKK-IN-2 |
PI3K/PIKK-IN-2 (compound 2) is an inhibitor of PI3K/PIKK. PI3K/PIKK-IN-2 can be used in preparing antibody-drug conjugates (ADCs).
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| DC81278 | Phenylalanylphenylalanylamide |
Phenylalanylphenylalanylamide (H-Phe-Phe-NH₂) is a ligand for the substance P 1–7 (SP1-7) binding site with a Ki value of 1.5 nM. Phenylalanylphenylalanylamide exerts significant anti-allodynic and anti-hyperalgesic effects in animal models of neuropathic pain following central administratio. Phenylalanylphenylalanylamide shows no distinct effect after peripheral (intraperitoneal) administration. Phenylalanylphenylalanylamide can be used for research on pain-related diseases.
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| DC81232 | PANK1/3 activator 1 |
PANK1/3 activator 1 (Compound 134) is a PANK1/3 activator with EC50 values of 0.011 and 0.065 μM. PANK1/3 activator 1 can be used for the research on diseases related to coenzyme A levels, such as CASTOR disease and organic acidemia.
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| DC81230 | PAC-Phe-Val |
PAC-Phe-Val is a potent HIV-1 protease inhibitor with an IC50 value of 33.10 nM. PAC-Phe-Val forms stable and strong interactions with critical active site residues, contributing to its high inhibitory potency. PAC-Phe-Val can be used for HIV/AIDS research.
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| DC81225 | P5(PEG24)-OSu |
P5(PEG24)-Osu is a type of PROTAC linker and belongs to the PEG category. P5(PEG24)-Osu can be used for the synthesis of PROTAC molecules.
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| DC81197 | Oleoylsulfamide |
Oleoylsulfamide is a cannabinoid receptor 1 inhibitor.
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| DC81192 | OC-C2-Cholesterol |
Cholesterol-conjugated OC prodrug (Compound 1b) is an orally active cholesterol-bound prodrug of Oseltamivir carboxylate. Cholesterol-conjugated OC prodrug has a protective effect against influenza virus infection. The Oseltamivir carboxylate released by the Cholesterol-conjugated OC prodrug has a longer duration of circulation than the Oseltamivir carboxylate released from Oseltamivir. Cholesterol-conjugated OC prodrug can be used in influenza research.
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| DC81191 | O-Carboranylphenoxyacetanilide (1,7-dicarbadodecaboran) |
O-Carboranylphenoxyacetanilide-1,7-dicarbadodecaboran(12) is a boron-containing organic compound.
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| DC81181 | NSC-624871 |
NSC-624871 (JD-87), an analog of Miltefosine, is natural killer T-2 (NKT-2) activator. NSC-624871 activates type II NKT cells. NSC-624871 can be used for the study of SARS-CoV-2-mediated inflammatory conditions.
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| DC81179 | NSC126188 |
NSC126188 is a RhoB inducer. NSC126188 can induce apoptosis by inhibiting Akt/FoxO3 signaling. NSC126188 can be used for the research of cancer, such as prostate cancer.
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| DC81166 | Norfloxacin succinil |
Norfloxacin succinil is a quinolone antibacterial agent. Norfloxacin succinil can be used in the research of infectious diseases such as urinary tract infections.
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| DC81165 | nNOS-IN-2 trihydrochloride |
nNOS-IN-2 trihydrochloride is a blood-brain barrier-permeable nitric oxide synthase (nNOS) inhibitor. nNOS-IN-2 trihydrochloride exhibits Ki values of 1.7 nM and 2.3 nM against human and rat nNOS, respectively, and shows high selectivity for human eNOS and iNOS. nNOS-IN-2 trihydrochloride also effectively reduces PD-L1 expression in human melanoma cells under both basal conditions and IFN-γ exposure. nNOS-IN-2 trihydrochloride can be used for the study of melanoma and related signaling pathways.
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| DC81163 | N-Methyl-4-(8-phenoxyoctoxy)aniline |
N-Methyl-4-(8-phenoxyoctoxy) aniline (Compound 3568) is an anti-schistosomal agent. N-Methyl-4-(8-phenoxyoctoxy) aniline exhibits definite anti-Schistosoma mansoni activity in mouse models, but has high acute toxicity. N-Methyl-4-(8-phenoxyoctoxy) aniline can be used in studies related to schistosomiasis.
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| DC81071 | MOR antagonist 2 hydrochloride |
MOR antagonist 2 hydrochloride is a blood-brain barrier-permeable μ-opioid receptor (MOR) antagonist, with an IC50 of 28.37 nM, an EC50 of 4.25 nM, and a Ki of 0.18 nM against MOR. MOR antagonist 2 hydrochloride stabilizes the inactive conformation of MOR to reduce receptor activation levels. MOR antagonist 2 hydrochloride antagonizes analgesic effects in the mouse warm-water tail-flick test. MOR antagonist 2 hydrochloride induces fewer opioid withdrawal symptoms (wet dog shakes, paw tremors) in mice with opioid withdrawal symptoms. MOR antagonist 2 hydrochloride can be used for the research of opioid use disorder.
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| DC81065 | MN-05 |
MN-05 is a dual neuroprotective and vasodilatory NMDA receptor inhibitor.MN-05 blocks calcium influx, reduces free radical production, and maintains mitochondrial membrane potential in cortical neurons exposed to glutamate.MN-05 dilates aortic rings against phenylephrine-induced contraction.MN-05 protects neurons against glutamate-induced injury in vitro.MN-05 can be used for the research of neurodegenerative diseases.
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| DC81056 | MKI-2 |
MKI-2 is a selective MASTL inhibitor with an IC50 of 37.44 nM. MKI-2 induces mitotic catastrophe resulting from the modulation of the MASTL-PP2A axis in breast cancer cells. MKI-2 reduces phospho-ENSA, total, phospho-c-Myc levels. MKI-2 inhibts cancer cells proliferation, migration and induces DNA damage. MKI-2 inhibits germinal vesicle breakdown in mouse oocytes. MKI-2 can be used for the research of cancer, such as breast cancer.
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| DC81042 | METTL3-IN-11 |
METTL3-IN-11 is an excellent, selective METTL3 inhibitor (IC50 = 45.31 nM). METTL3-IN-11 exhibits high selectivity towards METTL3 compared to DNMT1, EZH1, MLL1, and PRMT1. METTL3-IN-11 reduces the m6A level of total RNA in MOLM-13 and SKOV3 cells, induces cell apoptosis, and inhibits cell migration. METTL3-IN-11 can reduce the expression of m6A downstream target genes (c-MYC and BCL2). METTL3-IN-11 can be used for the study of ovarian cancer and acute myeloid leukemia.
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| DC81031 | Methiocarb |
Methiocarb (Mercaptodimethur) is an orally active carbamate insecticide. Methiocarb exerts dose-dependent toxic effects on onions. In addition to inhibiting acetylcholinesterase to induce cholinergic excitation, Methiocarb can induce lipid peroxidation in liver, kidney, brain and testicular tissues and alter reduced glutathione levels by generating ROS. Methiocarb can be used for agricultural pest control and research on oxidative stress-related cellular damage in mammals.
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| DC81024 | Mel56 |
Mel56 is a melanogenin analogue. Mel56 can promote the melanin production in human melanoma cells. Mel56 is cytotoxic to cancer cells and induces apoptosis in melanoma cells. Mel56 can be used for the study of melanoma.
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| DC81019 | MDL-20610 |
MDL-20610 is a potent antirhinovirus compound with an median plaque 50% inhibitory concentrations (IC1/2) of 0.003 µg/mL. MDL-20610 also exhibits activity against human, simian, and bovine rotaviruses and possesses variable enterovirus and paramyxovirus activity. MDL-20610 can be used for antiviral research.
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| DC81013 | MC-Gly-Gly-Phe-Gly-PAB-MMAE |
MC-Gly-Gly-Phe-Gly-PAB-MMAE (Compound SMP-81641) is a control targeted linker-agent conjugate. MC-Gly-Gly-Phe-Gly-PAB-MMAE can be used in tumor research.
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| DC81006 | Marpinersen |
Marpinersen, an antisense oligonucleotide, is an ataxin-2 synthesis reducer. It is used for the study of amyotrophic lateral sclerosis.
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| DC80997 | Mal-PEG-NHS ester (MW 2000) |
Mal-PEG-NHS ester (MW 2000) is a PEG linker, can be used to link lipoteichoic acid (LTA) and CpG DNA fragments to synthesis CpG-TA Heterodiners. Mal-PEG-NHS ester (MW 2000) can be used for immune stimulation research.
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| DC80990 | Lysyl-phenylalanyl-lysine |
Lysyl-phenylalanyl-lysine (Compound KFK) is a tripeptide and belongs to the peptide segments related to thrombospondin-1 (TSP-1). Lysyl-phenylalanyl-lysine can activate LAP-TGF-β1 and release active TGF-β1, thereby inhibiting abnormal expression of MMP. Lysyl-phenylalanyl-lysine can be used for research on skin aging-related diseases and poor wound healing.
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