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苯及其代谢产物如何影响人骨髓间充质干细胞。

How benzene and its metabolites affect human marrow derived mesenchymal stem cells.

机构信息

Department of Genetics, Faculty of Biological Sciences, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

出版信息

Toxicol Lett. 2012 Oct 17;214(2):145-53. doi: 10.1016/j.toxlet.2012.08.015. Epub 2012 Aug 30.

Abstract

Benzene is a known environmental pollutant with demonstrated leukemogenic activity. Marrow mesenchymal stem cells (MSCs), contribute to skeletal remodeling and repair. They also support haematopoiesis constructing important elements of haematopoietic niche. In the present study, the effects of a range of benzene concentrations along with those of its reactive metabolites, p-benzoquinone (BQ) and hydroquinone (HQ) on the viability of MSCs, apoptosis induction and caspase3/7 activity in these cells were analyzed. Our findings revealed that low concentrations of these chemicals (10μM of benzene, 5μM of either of BQ or HQ) significantly increase the number of chemically treated cells. Moreover, applied BQ/HQ concentrations were shown to be able to considerably inhibit caspase3/7 activity. While in benzene exposure experiments, the lowest concentration triggered the greatest increase in caspase3/7 activity during the initial hours of exposure. On the other hand, MSCs exposure to higher concentrations of benzene (100μM) and its metabolites, BQ/HQ (10μM and 50μM), can induce cell death after 24h of exposure mainly through apoptotic pathways. In addition, changes in the expression of six mRNAs due to being subjected to 10μM of BQ or HQ and 50μM of benzene were assessed. The genes under investigation were RUNX2, WNT5A, DKK1, JAG1, KITLG and CXCL12 which are expressed by MSCs playing roles in adipo-osteogenic differentiation of MSCs and the regulation of haematopoiesis. The analysis exhibited a great augmentation in RUNX2 expression associated with DKK1 and KITLG up-regulation. The results also indicated that treatment of cells with all three chemicals gives rise to down-regulation of JAG1 and treatment with both HQ and BQ triggers WNT5A over-expression. With regard to CXCL12, treatment with BQ caused slight up-regulation and treatment with HQ led to down-regulation. The alterations observed in the expression profile of genes could affect/modify the process of differentiation of MSCs into osteoblast. Other expected outcomes involve augmented canonical Wnt signaling activity in exposed cells with RUNX2 overexpression as the indicator which is probably forced to decrease to the normal level via DKK1 and WNT5A up-regulation. RUNX2 overexpression in MSCs can also be indicative of the RUNX2 up-regulation in myeloid progenitors thereby its involvement in AML development due to benzene exposure. Observed changes in the expression of WNT5A, DKK1, KITLG, CXCL12 and JAG1 can lead to the disturbance of HSC niche resulting in haematopoietic failure and leukemia development. It is obvious that increased viability together with caspase3/7 inhibition could aggravate the adverse effects of exposure to these chemicals.

摘要

苯是一种已知的环境污染物,具有明显的白血病发生活性。骨髓间充质干细胞(MSCs)有助于骨骼重塑和修复。它们还支持造血,构建造血龛的重要组成部分。在本研究中,分析了一系列苯浓度以及其反应性代谢物对苯醌(BQ)和对苯二酚(HQ)对 MSCs 活力、细胞凋亡诱导和 Caspase3/7 活性的影响。我们的研究结果表明,这些化学物质的低浓度(10μM 苯、5μM 对苯二酚或 HQ)显著增加了化学处理细胞的数量。此外,所应用的 BQ/HQ 浓度能够显著抑制 Caspase3/7 活性。在苯暴露实验中,最低浓度在暴露的最初几小时内引发了最大的 Caspase3/7 活性增加。另一方面,MSCs 暴露于较高浓度的苯(100μM)及其代谢物 BQ/HQ(10μM 和 50μM),在 24 小时暴露后主要通过凋亡途径诱导细胞死亡。此外,还评估了由于暴露于 10μM BQ 或 HQ 和 50μM 苯而导致的六种 mRNA 的表达变化。研究中的基因是 RUNX2、WNT5A、DKK1、JAG1、KITLG 和 CXCL12,这些基因由 MSCs 表达,在 MSCs 的成脂成骨分化和造血调节中发挥作用。分析显示,与 DKK1 和 KITLG 的上调相关,RUNX2 表达显著增加。结果还表明,三种化学物质处理细胞均导致 JAG1 下调,HQ 和 BQ 处理均导致 WNT5A 过表达。关于 CXCL12,BQ 处理导致轻微上调,HQ 处理导致下调。基因表达谱观察到的变化可能会影响/改变 MSCs 向成骨细胞分化的过程。其他预期结果包括暴露细胞中经典 Wnt 信号转导活性增加,RUNX2 过表达作为指标,可能通过 DKK1 和 WNT5A 的上调使其降至正常水平。MSCs 中 RUNX2 的过表达也可能表明骨髓祖细胞中 RUNX2 的过表达,因此由于暴露于苯,其可能参与 AML 的发展。WNT5A、DKK1、KITLG、CXCL12 和 JAG1 的表达变化可能导致 HSC 龛位紊乱,导致造血衰竭和白血病发展。显然,增加活力和抑制 Caspase3/7 可能会加重接触这些化学物质的不良影响。

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