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依托泊苷介导的骨髓基质细胞分泌白细胞介素-8 诱导造血干细胞动员。

Etoposide-mediated interleukin-8 secretion from bone marrow stromal cells induces hematopoietic stem cell mobilization.

机构信息

Division of Hematology-Oncology, Department of Internal Medicine, Korea University School of Medicine, 73, Goryeodae-ro, Seongbuk-gu, Seoul, 02841, South Korea.

Institute of Stem Cell Research, Korea University, Seoul, South Korea.

出版信息

BMC Cancer. 2020 Jul 2;20(1):619. doi: 10.1186/s12885-020-07102-x.

Abstract

BACKGROUND

We assessed the mechanism of hematopoietic stem cell (HSC) mobilization using etoposide with granulocyte-colony stimulating factor (G-CSF), and determined how this mechanism differs from that induced by cyclophosphamide with G-CSF or G-CSF alone.

METHODS

We compared the clinical features of 173 non-Hodgkin's lymphoma patients who underwent autologous peripheral blood stem cell transplantation (auto-PBSCT). Additionally, we performed in vitro experiments to assess the changes in human bone marrow stromal cells (hBMSCs), which support the HSCs in the bone marrow (BM) niche, following cyclophosphamide or etoposide exposure. We also performed animal studies under standardized conditions to ensure the following: exclude confounding factors, mimic the conditions in clinical practice, and identify the changes in the BM niche caused by etoposide-induced chemo-mobilization or other mobilization methods.

RESULTS

Retrospective analysis of the clinical data revealed that the etoposide with G-CSF mobilization group showed the highest yield of CD34+ cells and the lowest change in white blood cell counts during mobilization. In in vitro experiments, etoposide triggered interleukin (IL)-8 secretion from the BMSCs and caused long-term BMSC toxicity. To investigate the manner in which the hBMSC-released IL-8 affects hHSCs in the BM niche, we cultured hHSCs with or without IL-8, and found that the number of total, CD34+, and CD34+/CD45- cells in IL-8-treated cells was significantly higher than the respective number in hHSCs cultured without IL-8 (p = 0.014, 0.020, and 0.039, respectively). Additionally, the relative expression of CXCR2 (an IL-8 receptor), and mTOR and c-MYC (components of IL-8-related signaling pathways) increased 1 h after IL-8 treatment. In animal studies, the etoposide with G-CSF mobilization group presented higher IL-8-related cytokine and MMP9 expression and lower SDF-1 expression in the BM, compared to the groups not treated with etoposide.

CONCLUSION

Collectively, the unique mechanism of etoposide with G-CSF-induced mobilization is associated with IL-8 secretion from the BMSCs, which is responsible for the enhanced proliferation and mobilization of HSCs in the bone marrow; this was not observed with mobilization using cyclophosphamide with G-CSF or G-CSF alone. However, the long-term toxicity of etoposide toward BMSCs emphasizes the need for the development of more efficient and safe chemo-mobilization strategies.

摘要

背景

我们评估了依托泊苷联合粒细胞集落刺激因子(G-CSF)动员造血干细胞(HSC)的机制,并确定其与环磷酰胺联合 G-CSF 或 G-CSF 单独诱导的机制有何不同。

方法

我们比较了 173 例接受自体外周血造血干细胞移植(auto-PBSCT)的非霍奇金淋巴瘤患者的临床特征。此外,我们进行了体外实验,以评估人骨髓基质细胞(hBMSC)在环磷酰胺或依托泊苷暴露后的变化,这些细胞支持骨髓(BM)龛中的 HSCs。我们还在标准化条件下进行了动物研究,以确保排除混杂因素、模拟临床实践中的条件,并确定依托泊苷诱导的化疗动员或其他动员方法引起的 BM 龛变化。

结果

对临床数据的回顾性分析表明,依托泊苷联合 G-CSF 动员组显示出最高的 CD34+细胞产量和动员过程中白细胞计数变化最低。在体外实验中,依托泊苷触发 BMSCs 分泌白细胞介素(IL)-8,并导致长期 BMSC 毒性。为了研究 hBMSC 释放的 IL-8 如何影响 BM 龛中的 hHSCs,我们培养了有或没有 IL-8 的 hHSCs,发现 IL-8 处理的细胞中总细胞、CD34+细胞和 CD34+/CD45-细胞的数量明显高于无 IL-8 培养的 hHSCs(分别为 p=0.014、0.020 和 0.039)。此外,IL-8 处理后 1 小时,CXCR2(IL-8 受体)、mTOR 和 c-MYC(IL-8 相关信号通路的组成部分)的相对表达增加。在动物研究中,与未用依托泊苷治疗的组相比,依托泊苷联合 G-CSF 动员组的 BM 中 IL-8 相关细胞因子和 MMP9 的表达更高,SDF-1 的表达更低。

结论

总之,依托泊苷联合 G-CSF 诱导动员的独特机制与 BMSCs 分泌的 IL-8 有关,这是导致骨髓中 HSCs 增殖和动员增强的原因;而环磷酰胺联合 G-CSF 或 G-CSF 单独动员则没有观察到这种现象。然而,依托泊苷对 BMSCs 的长期毒性强调需要开发更有效和安全的化疗动员策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a2b/7330970/f2e4acf766a7/12885_2020_7102_Fig1_HTML.jpg

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