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CCI-006 Sale

目录号 : GC65208

CCI-006 是 MLL-重组白血病细胞的选择性抑制剂和化学增敏剂,通过抑制线粒体呼吸,导致 MLL-重组白血病细胞中不可克服的线粒体去极化和促凋亡的未折叠蛋白反应。

CCI-006 Chemical Structure

Cas No.:292053-42-0

规格 价格 库存 购买数量
10mM (in 1mL DMSO)
¥2,970.00
现货
5mg
¥2,700.00
现货
10mg
¥4,230.00
现货
50mg
¥12,600.00
现货

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Sample solution is provided at 25 µL, 10mM.

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产品描述

CCI-006 is a selective inhibitor and chemosensitizer of MLL-rearranged leukemia cells, by inhibits mitochondrial respiration resulting in insurmountable mitochondrial depolarization and a pro-apoptotic unfolded protein response (UPR) in a subset of MLL-r leukemia cells[1].

[1]. Somers K, et al. A novel small molecule that kills a subset of MLL-rearranged leukemia cells by inducing mitochondrial dysfunction. Oncogene. 2019 Jan 22.

Chemical Properties

Cas No. 292053-42-0 SDF Download SDF
分子式 C15H12N2O5S 分子量 332.33
溶解度 DMSO : ≥ 83.33 mg/mL (250.74 mM) 储存条件 Store at -20°C
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1 mg 5 mg 10 mg
1 mM 3.0091 mL 15.0453 mL 30.0906 mL
5 mM 0.6018 mL 3.0091 mL 6.0181 mL
10 mM 0.3009 mL 1.5045 mL 3.0091 mL
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Research Update

A novel small molecule that kills a subset of MLL-rearranged leukemia cells by inducing mitochondrial dysfunction

Oncogene 2019 May;38(20):3824-3842.PMID:30670779DOI:PMC6756102

Survival rates for pediatric patients suffering from mixed lineage leukemia (MLL)-rearranged leukemia remain below 50% and more targeted, less toxic therapies are urgently needed. A screening method optimized to discover cytotoxic compounds selective for MLL-rearranged leukemia identified CCI-006 as a novel inhibitor of MLL-rearranged and CALM-AF10 translocated leukemias that share common leukemogenic pathways. CCI-006 inhibited mitochondrial respiration and induced mitochondrial membrane depolarization and apoptosis in a subset (7/11, 64%) of MLL-rearranged leukemia cell lines within a few hours of treatment. The unresponsive MLL-rearranged leukemia cells did not undergo mitochondrial membrane depolarization or apoptosis despite a similar attenuation of mitochondrial respiration by the compound. In comparison to the sensitive cells, the unresponsive MLL-rearranged leukemia cells were characterized by a more glycolytic metabolic phenotype, exemplified by a more pronounced sensitivity to glycolysis inhibitors and elevated HIF1α expression. Silencing of HIF1α expression sensitized an intrinsically unresponsive MLL-rearranged leukemia cell to CCI-006, indicating that this pathway plays a role in determining sensitivity to the compound. In addition, unresponsive MLL-rearranged leukemia cells expressed increased levels of MEIS1, an important leukemogenic MLL target gene that plays a role in regulating metabolic phenotype through HIF1α. MEIS1 expression was also variable in a pediatric MLL-rearranged ALL patient dataset, highlighting the existence of a previously undescribed metabolic variability in MLL-rearranged leukemia that may contribute to the heterogeneity of the disease. This study thus identified a novel small molecule that rapidly kills MLL-rearranged leukemia cells by targeting a metabolic vulnerability in a subset of low HIF1α/low MEIS1-expressing MLL-rearranged leukemia cells.