首页> 美国卫生研究院文献>International Journal of Oncology >A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
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A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line

机译:骨髓基质细胞的一个子集通过白血病细胞系中的胰岛素样生长因子-I调节ATP结合盒基因的表达

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摘要

The importance of the insulin-like growth factor, IGF, as a signaling axis in cancer development, progression and metastasis is highlighted by its effects on cancer cells, notably proliferation and acquired resistance. The role of the microenvironment within which cancer cells evolve and which mediates this effect is far from clear. Here, the involvement of IGF-I in inducing multidrug resistance in a myeloid leukemia cell line, grown in the presence of bone marrow-derived stromal cells called ‘Hospicells’ (BMH), is demonstrated. We found that i) drug sensitive as well as resistant leukemia cells express IGF-I and its receptor IGF-IR. However, the resistant cells were found to secrete high levels of IGF-I. ii) Presence of exogenous IGF-I promoted cell proliferation, which decreased when an inhibitor of IGF-IR (picropodophyllin, PPP) was added. iii) BMH and IGF-I are both involved in the regulation of genes of the ATP binding cassette (ABC) related to resistance development (MDR1, MRP1, MRP2, MRP3 and BCRP). iv) The levels of ABC gene expression by leukemia cells were found to increase in the presence of increasing numbers of BMH. However, these levels decreased when IGF-IR was inhibited by addition of PPP. v) Co-culture of the drug-sensitive leukemia cells with BMH induced protection against the action of daunorubicin. This chemoresistance was amplified by the presence of IGF-I whereas it decreased when IGF-IR was inhibited. Our results underline the role of microenvironment in concert with the IGF-1 pathway in conferring drug resistance to leukemia cells.
机译:胰岛素样生长因子IGF作为癌症发展,进程和转移中的信号转导轴的重要性通过其对癌细胞的影响(尤其是增殖和获得性耐药)得到了强调。癌细胞在其中进化并介导这种作用的微环境的作用尚不清楚。在这里,证明了IGF-I参与诱导髓样白血病细胞系中的多药耐药性,该细胞系在称为“ Hospicells”(BMH)的骨髓基质细胞存在下生长。我们发现,i)药物敏感性以及抗性白血病细胞表达IGF-1及其受体IGF-1R。然而,发现抗性细胞分泌高水平的IGF-I。 ii)外源性IGF-1的存在促进了细胞增殖,当加入IGF-1R的抑制剂(鬼臼苦素,PPP)时,这种增殖减少了。 iii)BMH和IGF-I均参与与耐药性发展相关的ATP结合盒(ABC)基因的调控(MDR1,MRP1,MRP2,MRP3和BCRP)。 iv)发现在存在越来越多的BMH的情况下,白血病细胞的ABC基因表达水平增加。但是,当通过添加PPP抑制IGF-1R时,这些水平降低。 v)将药物敏感的白血病细胞与BMH共同培养,以预防柔红霉素的作用。这种化学抗性通过IGF-1的存在而被放大,而当IGF-1R被抑制时则降低。我们的结果强调了微环境与IGF-1途径协同作用对白血病细胞产生耐药性的作用。

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