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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Zebrafish screen identifies novel compound with selective toxicity against leukemia
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Zebrafish screen identifies novel compound with selective toxicity against leukemia

机译:斑马鱼筛选物鉴定出对白血病具有选择性毒性的新型化合物

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To detect targeted antileukemia agents we have designed a novel, high-content in vivo screen using genetically engineered, T-cell reporting zebrafish.We exploited the developmental similarities between normal and malignant T lymphoblasts to screen a small molecule library for activity against immature T cells with a simple visual readout in zebrafish larvae. After screening 26 400 molecules, we identified Lenaldekar (LDK), a compound that eliminates immature T cells in developing zebrafish without affecting the cell cycle in other cell types. LDK is well tolerated in vertebrates and induces longterm remission in adult zebrafish withcMYC-induced T-cell acute lymphoblastic leukemia (T-ALL).LDKcauses dephosphorylation of members of the PI3 kinase/AKT/mTOR pathway and delays sensitive cells in late mitosis.Among human cancers, LDK selectively affects survival of hematopoietic malignancy lines and primary leukemias, including therapy-refractory B-ALL and chronic myelogenous leukemia samples, and inhibits growth of human T-ALL xenografts. This work demonstrates the utility of our method using zebrafish for antineoplastic candidate drug identification and suggests a new approach for targeted leukemia therapy. Although our efforts focused on leukemia therapy, this screening approach has broad implications as it can be translated to other cancer types involving malignant degeneration of developmentally arrested cells.
机译:为了检测靶向的抗白血病药,我们使用基因工程的T细胞报告斑马鱼设计了新颖的,高含量的体内筛选方法,我们利用正常T细胞和恶性T淋巴母细胞之间的发育相似性来筛选小分子文库针对未成熟T细胞的活性斑马鱼幼虫的简单视觉读数。在筛选了26400个分子后,我们鉴定了Lenaldekar(LDK),该化合物可消除发育中的斑马鱼中未成熟的T细胞,而不会影响其他细胞类型的细胞周期。 LDK在脊椎动物中具有良好的耐受性,并在成年斑马鱼中引起cMYC诱导的T细胞急性淋巴细胞白血病(T-ALL)的长期缓解.LDK导致PI3激酶/ AKT / mTOR途径成员的去磷酸化并延迟晚期有丝分裂中的敏感细胞。在人类癌症中,LDK有选择地影响造血系统恶性肿瘤和原发性白血病(包括难治性B-ALL和慢性粒细胞性白血病样本)的存活,并抑制人T-ALL异种移植物的生长。这项工作证明了我们使用斑马鱼的方法用于抗肿瘤候选药物鉴定的实用性,并提出了靶向白血病治疗的新方法。尽管我们的工作集中在白血病治疗上,但是这种筛选方法具有广泛的意义,因为它可以转化为其他类型的癌症,包括发育停滞细胞的恶性变性。

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