EB-3D
CAS No. 1839150-63-8
EB-3D ( ChoK inhibitor EB-3D )
产品货号. M12841 CAS No. 1839150-63-8
EB-3D 是一种新型有效的选择性胆碱激酶 ChoKα 抑制剂,IC50 为 1.0 uM。
纯度: >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| 规格 | 价格/人民币 | 库存 | 数量 |
| 5MG | ¥1492 | 有现货 |
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| 10MG | ¥2356 | 有现货 |
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| 25MG | ¥3841 | 有现货 |
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| 50MG | ¥5375 | 有现货 |
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| 100MG | ¥7047 | 有现货 |
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| 500MG | 获取报价 | 有现货 |
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| 1G | 获取报价 | 有现货 |
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| 1 mL x 10 mM in DMSO | ¥2119 | 有现货 |
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生物学信息
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产品名称EB-3D
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注意事项本公司产品仅用于科研实验,不得用于人体或动物的临床与诊断
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产品简述EB-3D 是一种新型有效的选择性胆碱激酶 ChoKα 抑制剂,IC50 为 1.0 uM。
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产品描述EB-3D is a novel potent and selective choline kinase ChoKα inhibitor with IC50 of 1.0 uM (purified ChoKα1), strongly impairs cell proliferation in a variety of different cancer cell lines; demonstrates in vitro antiproliferative effects against HeLa (IC50=79 nM), RS4,11 (IC50=45 nM), A549 (IC50=27 nM) and MDA-MB-231 (IC50=100 nM); displays excellent antiproliferative activity against a wide cohort of T-leukemic cell lines with GI50 of 0.9 nM (MOLT-16 cell)-479 nM (CCRF-CEM), reduces the intracellular pool of PCho, but also inhibits the synthesis of choline-containing lipids; induces G0/G1 arrest that lead to apoptosis in leukemia cell lines; affects AMPK-mTOR signaling pathway, synergizes with both dexamethasone and L-asparaginase.
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体外实验EB-3D displays (0-100 μM; 72 hours) excellent antiproliferative activity against a wide cohort of T-leukemic cell lines, with GI GI50s 13 values in the nanomolar range.EB-3D (1.25-5μM; 24 hours) induced apoptosis in leukemia cell lines.EB-3D (0.5-1 μM; 24 hours) induces a G0/G1 arrest that lead to apoptosis.EB-3D (0.3 μM; 48 hours) shows a first spike of activation of AMPKα after 30 minutes and a later increase in the phosphorylation of T172.EB-3D (1-40 μM; 48?hours) inhibits cell growth in HepG2 cells with a GI50 of 14.55 μM.EB-3D induces deregulation of the AMPK-mTOR pathway and apoptosis in leukemia T-cells. Cell Proliferation Assay Cell Line:JURKAT, CCRF-CEM, HSB-2, MOLT-16, DNA-41, LOUCY, PEER, ALL-SIL cells Concentration:0.001, 0.01, 0.1, 1, 10, 100 μM Incubation Time:72 hours Result:Inhibited JURKAT, CCRF-CEM, HSB-2, MOLT-16, DNA-41, LOUCY, PEER, and ALL-SIL cells growth with GI50s of 136.2, 478.8, 17.7, 0.9, 60.6, 200, 265, and 132 nM, respectively.Apoptosis Analysis Cell Line:Jurkat, CCRF-CEM and HSB-2 cells.Concentration:1.25, 2.5, 5 μM Incubation Time:24 hours Result:Induced apoptosis in leukemia cell lines.Cell Cycle Analysis Cell Line:Jurkat, CCRF-CEM and HSB-2 cellsConcentration:0.5, 1 μM Incubation Time:24 hours Result:Induces cell cycle arrest in G0/G1 phase.Western Blot Analysis Cell Line:Jurkat cells.Concentration:0.3 μM.Incubation Time:48 hours Result:Showed a first spike of activation of AMPKα after 30 minutes of treatment and a later increase in the phosphorylation of T172. The increase in S79 phosphorylation of its main target ACC (acetyl-coenzyme A (CoA) carboxylase), followed the same pattern. This rapid activation of AMPK, in turn induced a consequent reduction in mTOR phosphorylation that is visible already at 30’ and that becomes amplified at longer time probably due to the interruption of feedback loops that are characteristic of mTOR connecting pathways.
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体内实验EB-3D (1 mg/kg; i.p.; every other day) impairs mammary tumor growth in syngeneic orthotopic E0771-C57BL/6 mouse model.EB-3D (2.5 mg/kg; every other day for 4 weeks) shows a reduction of the number of spontaneous lung macro- and micrometastasis. Animal Model:E0771-C57BL/6 mice Dosage:I.p.; every other day for 4 weeks Administration:2.5 mg/kg Result:A reduction of the number of spontaneous lung macro- and micrometastasis.
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同义词ChoK inhibitor EB-3D
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通路Others
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靶点ChoK
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受体ChoK
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研究领域——
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适应症——
化学信息
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CAS Number1839150-63-8
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分子量644.452
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分子式C30H36Br2N4O2
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纯度>98% (HPLC)
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溶解度In Vitro:?DMSO : 50 mg/mL (77.59 mM)
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SMILESCN(C)C1=CC=[N+](C=C1)CC2=CC=C(C=C2)OCCOC3=CC=C(C=C3)C[N+]4=CC=C(C=C4)N(C)C.[Br-].[Br-]
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化学全称1,1'-(((ethane-1,2-diylbis(oxy))bis(4,1-phenylene))bis(methylene))bis(4-(dimethylamino)pyridinium) bromide
运输与储存
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储存条件(-20℃)
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运输条件With Ice Pack
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稳定性≥ 2 years
参考文献
1. Schiaffino-Ortega S, et al. Sci Rep. 2016 Mar 31;6:23793.
2. Mariotto E, et al. Biochem Pharmacol. 2018 Jul 10. pii: S0006-2952(18)30272-7.
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