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Study on the bone marrow mesenchymal stem cells induced drug resistance in the U937 cells and its mechanism

机译:骨髓间充质干细胞诱导U937细胞耐药性及其机制的研究

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Background The hematopoietic microenvironment (HM) plays a critical role in malignant cell growth, patient survival, and response to chemotherapy in hematologic malignancies. However, mechanisms associated with this environmental influence remain unclear. In this study, we investigated the role of bone marrow derived mesenchymal stem cells (MSCs) in U937 cell line, to find out the relations between leukemia drug resistance and the MSCs. Methods U937 cells were cultured in suspension or grew adherently with MSCs. The cell growth curve was drawn and the cell cycle was measured by flow cytometry. Apoptosis and sensitivity of U937 to daunoblastina (DNR) were quantified by DNA ladder detection and trypan blue exclusion assays, respectively. The gene expression profile chip technology was used to determine and analyze the changes in apoptosis-related gene expression after adherent culture and the expression of MDR1 mRNA was assessed by reverse transcriptional polymerase chain reaction (RT-PCR) at the same time. Results In the adherent culture, the proliferation of the U937 cells was inhibited, the G0/G1 phase cells increased (F=64.9726, P < 0.0001), G2/M phase cells were decreased (F = 98.1361, .P < 0.0001) and the natural apoptosis rate was decreased (F=24.0866, P < 0.0001) compared with those in the suspended culture. U937 cell viability was enhanced and cell apoptosis was blocked during DNR treatment in adherent culture with MSCs. Thirty-nine differently expressed genes were screened from the 487 apoptosis related genes in the adherent culture U937 cells. Among the 37 upregulated genes, Bel-XL was upregulated most significantly. Two genes were downregulated. Adherent culture did not induce MDR1 mRNA expression in U937 cells. Conclusions MSCs play a role in modulating the proliferation of U937 cells and response of U937 cells to DNR, and Bel-XL apoptosis-inhibiting gene may be most important in determining the sensitivity of leukemic cells to treatment, which is not related to MDR1.
机译:背景造血微环境(HM)在血液恶性肿瘤的恶性细胞生长,患者存活率以及对化学疗法的反应中起着至关重要的作用。但是,与此环境影响相关的机制仍不清楚。在这项研究中,我们调查了骨髓来源的间充质干细胞(MSCs)在U937细胞系中的作用,以找出白血病耐药性与MSCs之间的关系。方法U937细胞悬浮培养或与MSCs贴壁生长。绘制细胞生长曲线,并通过流式细胞术测量细胞周期。分别通过DNA梯形检测和台盼蓝排除法对U937的凋亡和对柔毛母细胞(DNR)的敏感性进行了定量。基因表达谱芯片技术被用于确定和分析贴壁培养后凋亡相关基因表达的变化,同时通过逆转录聚合酶链反应(RT-PCR)评估MDR1 mRNA的表达。结果在贴壁培养中,U937细胞的增殖受到抑制,G0 / G1期细胞增加(F = 64.9726,P <0.0001),G2 / M期细胞减少(F = 98.1361,.P <0.0001),与悬浮培养相比,其自然凋亡率降低了(F = 24.0866,P <0.0001)。在用MSC进行贴壁培养的DNR处理过程中,U937细胞活力增强,细胞凋亡受到阻滞。从贴壁培养U937细胞的487个凋亡相关基因中筛选出39个差异表达的基因。在37个上调基因中,Bel-XL最明显上调。两个基因被下调。贴壁培养未诱导U937细胞中MDR1 mRNA表达。结论MSCs在调节U937细胞的增殖和U937细胞对DNR的应答中起重要作用,而Bel-XL凋亡抑制基因可能在确定白血病细胞对治疗的敏感性中起着重要的作用,与MDR1无关。

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