CYP4Z1-IN-1

  Cat. No.:  DC65497   Featured
Chemical Structure
2760611-38-7
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More than 5000 active chemicals with high quality for research!
Field of application
CYP4Z1-IN-1 (compound 7c) is a potent CYP4Z1 inhibitor, with an IC50 of 41.8 nM. CYP4Z1-IN-1 decreases the expression of breast CSCs stemness markers, spheroid formation, and metastatic ability as well as tumor-initiation capability in a concentration-dependent manner in vitro and in vivo[1].
Cas No.: 2760611-38-7
Chemical Name: CYP4Z1-IN-1
SMILES: O=C(CCCC1=CC=C(C=C1)N/C=N/O)OCC
Formula: C13H18N2O3
M.Wt: 250.29
Purity: >98%
Sotrage: 2 years -20°C Powder, 2 weeks 4°C in DMSO, 6 months -80°C in DMSO
Description: CYP4Z1-IN-1 (compound 7c) is a potent CYP4Z1 inhibitor, with an IC50 of 41.8 nM. CYP4Z1-IN-1 decreases the expression of breast CSCs stemness markers, spheroid formation, and metastatic ability as well as tumor-initiation capability in a concentration-dependent manner in vitro and in vivo[1].
Target: CYP4Z1:41.8 ± 1.4 nM (IC50) CYP4F11:291.3 ± 46 nM (IC50) CYP4F12:1598.3 ± 5 nM (IC50) CYP2D6:>10 000 nM (IC50) CYP2C9:>10 000 nM (IC50) CYP3A4:>10 000 nM (IC50)
In Vivo: CYP4Z1-IN-1 (compound 7c) showed no significant toxicity or weight loss in mice when administered orally at a dosage of 2000 mg/kg for 7 consecutive days[1]. In an animal model of BALB/c-nude mice, pre-treatment with CYP4Z1-IN-1 (12.8 μM) for 72 hours inhibited the tumor-initiating ability of breast cancer cells implanted subcutaneously into the inguinal mammary gland of the mice[1].
In Vitro: CYP4Z1-IN-1 (compound 7c) exhibits anti-proliferative activity against breast cancer CSC (cancer stem cells), with an IC50 of 483 ± 2.5 nM[1]. CYP4Z1-IN-1 (0.8-51.2 μM, 24 h) inhibits the expression of stem cell markers (P-gp, Oct3/4, Nanog, ALDH1A1, and Sox2) in breast cancer cells[1]. CYP4Z1-IN-1 (0.8-51.2 μM, 24-48 h) reduces the migration and invasion ability of breast cancer cells[1]. Western Blot Analysis[1] Cell Line: MCF-7 and MDA-MB-231 cells Concentration: 0.8 μM, 3.2 μM, 12.8 μM, 51.2 μM Incubation Time: 24 h Result: Significantly suppressed the protein expression of stemness markers (P-gp, Oct3/4, Nanog, ALDH1A1, and Sox2) in MCF-7 cells in a concentration-dependent manner.
References: [1]. Yuan Y, et al. Identification of a Novel Potent CYP4Z1 Inhibitor Attenuating the Stemness of Breast Cancer Cells through Lead Optimization. J Med Chem. 2022 Dec 8;65(23):15749-15769.
MSDS
Cat. No. Product name Field of application
DC12145 DLinDMA DLinDMA is a key lipid component of stable nucleic acid lipid particles as a benchmark.
DC40169 DMG-PEG2000 DMG-PEG 2000 is used for the preparation of liposome for siRNA delivery with improved transfection efficiency in vitro. DMG-PEG 2000 is also used for the lipid nanoparticle for an oral plasmid DNA delivery approach in vivo through a facile surface modific
DC45611 DMPC 1,2-Dimyristoyl-sn-glycero-3-phosphocholine (DMPC) is a synthetic phospholipid used in liposomes. 1,2-Dimyristoyl-sn-glycero-3-phosphocholine is used for the study of lipid monolayers and bilayers.
DC70000 Lysyllysyllysine Lysyllysyllysine is a cationic moietie that may be used in the construction of gene delivery vectors and DNA nanoparticles.
DC33580 DODMA DODMA, also known as MBN 305A is a a cationic lipid containing the unsaturated long-chain (18:1) oleic acid inserted at both the sn-1 and sn-2 positions. It has been used in the composition of lipospomes formulated as stable nucleic acid lipid particles that can encapsulate siRNA or other small molecules to be used for drug delivery
DC33635 DODAP DODAP, also known as 1,2-Dioleoyl-3-dimethylammonium-propane, is a cationic lipid. It has been used as a component in liposomes that can be used to encapsulate siRNA, immunostimulatory oligodeoxynucleotides, antisense oligonucleotides, or chemotherapeutic agents for in vitro and in vivo delivery.
DC59010 C14-4 (C14-494,Lipid B-4,Lipid B4) C14-4 (C14-494,Lipid B-4,Lipid B4) is a novel ionizable lipid with the highest T-cell transfection efficiency and low cytotoxicity.The C14-4 ionizable lipid has been explored for CAR-T therapy.To screen the excellent formulations for mRNA delivery, a lipid library of 24 ionizable lipids was constructed to make iLNPs, which were used to deliver luciferase mRNA into Jurkat cells.[115] The optimal iLNPs formulation was C14-4 iLNPs (C14-4 ionizable lipid, DOPE, chol, and PEG at a molar ratio of 35%, 16%, 46.5%, and 2.5%) (Figure 6c). The optimal dose of luciferase mRNA for C14-4 iLNPs was 30 ng. Compared with electroporated CAR T cells, the CAR T cells engineered via C14-4 iLNPs showed potent cancer-killing activity when they were cocultured with Nalm-6 acute lymphoblastic leukemia cells. To obtain a safer and more effective CAR mRNA delivery vehicle, the orthogonal design provided 256 potential formulations, and 16 representative iLNPs formulations were evaluated.Through evaluating the safety, delivery efficiency, and transfection efficiency of 16 iLNPs, the formulation B10 (C14-4 ionizable lipid, DOPE, chol, PEG at a molar ratio of 40%, 30%, 25%, and 2.5%) was screened out as the optimal performing formulation. The luciferase expression based on B10 formulation was increased threefold than the initial formulation. Reducing the accumulation and clearance of iLNPs in the liver can increase the expression of CAR mRNA in T cells, further improving the therapeutic effect of CAR-T. Studies have shown that cholesterol analogs can alter the mechanisms of intracellular circulation and enhance the delivery of mRNA, which may be related to the reduced recognition of iLNPs by the Niemann Pick C1 (NPC1) enzyme.The addition of a hydroxyl group to various locations in the cholesterol molecule can alter the binding kinetics between the modified cholesterol and NPC1, and reduced NPC1 recognition of cholesterol. The results showed that replacement of 25% and 50% 7 α-hydroxycholesterol for cholesterol in iLNPs improved mRNA delivery to primary human T cells in vitro by 1.8-fold and twofold, respectively.C14-4 is one of the ionizable lipids to efficiently deliver mRNA to Jurkat cells or primary human T cells. It will effectively promote the development of mRNA delivery by iLNPs for CAR-T therapy.
DC33636 DOTAP DOTAP, also known as 1,2-Dioleoyl-3-trimethylammoniumpropane, is a cationic liposome-forming compound used for transfection of DNA, RNA, and other negatively charged molecules into eukaryotic cells. It has been used in gene delivery vectors for gene ther
DC58047 DSPE-PEG 2000 PEG2000-DSPE is used for creating micelles that are able to carry drugs with low solubility.
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