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首页> 外文期刊>Cytotherapy >The growth of K562 human leukemia cells was inhibited by therapeutic neural stem cells in cellular and xenograft mouse models
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The growth of K562 human leukemia cells was inhibited by therapeutic neural stem cells in cellular and xenograft mouse models

机译:通过细胞和异种移植小鼠模型中的治疗性神经干细胞抑制K562人白血病细胞的生长

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摘要

To confirm the anti-tumor effect of engineered neural stem cells (NSCs) expressing cytosine deaminase (CD) and interferon-$ (IFN-$) with prodrug 5-fluorocytosine (FC), K562 chronic myeloid leukemia (CML) cells were co-cultured with the neural stem cell lines HB1.F3.CD and HB1.F3.CD.IFN-beta in 5-FC containing media. A significant decrease in the viability of K562 cells was observed by the treatment of the NSC lines, HB1.F3.CD and HB1.F3.CD.IFN-beta, compared with the control. A modified trans-well assay showed that engineered human NSCs significantly migrated toward K562 CML cells more than human normal lung cells. In addition, the important chemoattractant factors involved in the specific migration ability of stem cells were found to be expressed in K562 CML cells. In a xenograft mouse model, NSC treatments via subcutaneous and intravenous injections resulted in significant inhibitions of tumor mass growth and extended survival dates of the mice. Taken together, these results suggest that gene therapy using genetically engineered stem cells expressing CD and IFN-beta may be effective for treating CML in these mouse models.
机译:为了确认用前药5-氟胞菌(Fc)表达胞嘧啶脱氨酶(CD)和干扰素 - $(IFN-$)的工程神经干细胞(NSCs)的抗肿瘤作用,K562慢性骨髓白血病(CML)细胞是共同的用神经干细胞系HB1.F3.cd和HB1.F3.CD.IFN-β培养,含5-FC含培养基。通过治疗NSC线,Hb1.f3.cd和Hb1.f3.fn-beta,观察到K562细胞的活力的显着降低。改性的透气井测定显示,比人类正常肺细胞更显着地迁移到K562 CML细胞的工程化人NSC。此外,发现涉及干细胞特异性迁移能力的重要趋化性因素在K562 CML细胞中表达。在异种移植小鼠模型中,通过皮下和静脉注射的NSC治疗导致肿瘤质量生长和小鼠延长存活日期的显着抑制。总之,这些结果表明,使用遗传工程干细胞表达CD和IFN-β的基因治疗可有效治疗这些小鼠模型中的CML。

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