Scientific Resources
-
文献Callahan KP et al. (OCT 2014) Leukemia 28 10 1960--8
Flavaglines target primitive leukemia cells and enhance anti-leukemia drug activity.
Identification of agents that target human leukemia stem cells is an important consideration for the development of new therapies. The present study demonstrates that rocaglamide and silvestrol,closely related natural products from the flavagline class of compounds,are able to preferentially kill functionally defined leukemia stem cells,while sparing normal stem and progenitor cells. In addition to efficacy as single agents,flavaglines sensitize leukemia cells to several anticancer compounds,including front-line chemotherapeutic drugs used to treat leukemia patients. Mechanistic studies indicate that flavaglines strongly inhibit protein synthesis,leading to the reduction of short-lived antiapoptotic proteins. Notably though,treatment with flavaglines,alone or in combination with other drugs,yields a much stronger cytotoxic activity toward leukemia cells than the translational inhibitor temsirolimus. These results indicate that the underlying cell death mechanism of flavaglines is more complex than simply inhibiting general protein translation. Global gene expression profiling and cell biological assays identified Myc inhibition and the disruption of mitochondrial integrity to be features of flavaglines,which we propose contribute to their efficacy in targeting leukemia cells. Taken together,these findings indicate that rocaglamide and silvestrol are distinct from clinically available translational inhibitors and represent promising candidates for the treatment of leukemia. View Publication -
文献Pei S et al. (NOV 2013) The Journal of biological chemistry 288 47 33542--58
Targeting aberrant glutathione metabolism to eradicate human acute myelogenous leukemia cells.
The development of strategies to eradicate primary human acute myelogenous leukemia (AML) cells is a major challenge to the leukemia research field. In particular,primitive leukemia cells,often termed leukemia stem cells,are typically refractory to many forms of therapy. To investigate improved strategies for targeting of human AML cells we compared the molecular mechanisms regulating oxidative state in primitive (CD34(+)) leukemic versus normal specimens. Our data indicate that CD34(+) AML cells have elevated expression of multiple glutathione pathway regulatory proteins,presumably as a mechanism to compensate for increased oxidative stress in leukemic cells. Consistent with this observation,CD34(+) AML cells have lower levels of reduced glutathione and increased levels of oxidized glutathione compared with normal CD34(+) cells. These findings led us to hypothesize that AML cells will be hypersensitive to inhibition of glutathione metabolism. To test this premise,we identified compounds such as parthenolide (PTL) or piperlongumine that induce almost complete glutathione depletion and severe cell death in CD34(+) AML cells. Importantly,these compounds only induce limited and transient glutathione depletion as well as significantly less toxicity in normal CD34(+) cells. We further determined that PTL perturbs glutathione homeostasis by a multifactorial mechanism,which includes inhibiting key glutathione metabolic enzymes (GCLC and GPX1),as well as direct depletion of glutathione. These findings demonstrate that primitive leukemia cells are uniquely sensitive to agents that target aberrant glutathione metabolism,an intrinsic property of primary human AML cells. View Publication
过滤器
筛选结果
- 细胞类型 白血病/淋巴瘤细胞 删除该内容
品牌
细胞类型
- B 细胞 182 项目
- Cardiomyocytes 21 项目
- CD4+ 121 项目
- CD8+ 92 项目
- CHO细胞 3 项目
- Endoderm 18 项目
- Endothelial Cells 12 项目
- Epithelial Cells 29 项目
- HEK-293细胞(人胚肾293细胞) 1 项目
- Hematopoietic Cells 22 项目
- Hepatic Cells 13 项目
- HUVEC细胞(人脐静脉内皮细胞) 1 项目
- Mesenchymal Cells 18 项目
- Mesoderm 18 项目
- Neural Cells 89 项目
- NK 细胞 121 项目
- Other Subsets 21 项目
- PSC-Derived 128 项目
- PSC衍生 27 项目
- Regulatory 34 项目
- T Cells 102 项目
- T 细胞 352 项目
- 上皮细胞 106 项目
- 中胚层 1 项目
- 乳腺细胞 74 项目
- 先天性淋巴细胞 23 项目
- 全血 6 项目
- 内皮细胞 8 项目
- 内皮集落形成细胞(ECFCs) 3 项目
- 前列腺细胞 8 项目
- 单个核细胞 73 项目
- 单核细胞 142 项目
- 多巴胺能神经元 3 项目
- 多能干细胞 1859 项目
- 小胶质细胞 3 项目
- 巨噬细胞 25 项目
- 巨核细胞 8 项目
- 心肌细胞 15 项目
- 成骨细胞 6 项目
- 星形胶质细胞 2 项目
- 杂交瘤细胞 83 项目
- 树突状细胞(DCs) 91 项目
- 气道细胞 73 项目
- 淋巴细胞 33 项目
- 癌细胞及细胞系 130 项目
- 白细胞单采样本 12 项目
- 白血病/淋巴瘤细胞 14 项目
- 真皮细胞 2 项目
- 神经元 165 项目
- 神经干/祖细胞 420 项目
- 神经细胞 6 项目
- 粒细胞及其亚群 76 项目
- 红系细胞 9 项目
- 肌源干/祖细胞 9 项目
- 肝细胞 25 项目
- 肠道细胞 61 项目
- 肾细胞 3 项目
- 肾脏细胞 4 项目
- 肿瘤细胞 11 项目
- 胰腺细胞 12 项目
- 脂肪细胞 6 项目
- 脑肿瘤干细胞 87 项目
- 血小板 4 项目
- 血浆 16 项目
- 血管生成细胞 2 项目
- 调节性细胞 9 项目
- 软骨细胞 7 项目
- 造血干/祖细胞 875 项目
- 间充质基质细胞 13 项目
- 间充质干/祖细胞 156 项目
- 间充质细胞 1 项目
- 骨髓基质细胞 2 项目
- 骨髓瘤细胞 4 项目
- 髓系细胞 116 项目
- 鼠胚胎成纤维细胞 1 项目
- 白细胞 9 项目
- 其它细胞系 5 项目
- 红细胞 10 项目