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白细胞介素 11 可保护骨髓线粒体免受辐射损伤。

Interleukin 11 protects bone marrow mitochondria from radiation damage.

机构信息

Zhongshan Hospital, Xiamen University, Xiamen, Fujian, P. R. China.

Department of Radiation Oncology, UF Shands Cancer Center, University of Florida, Gainesville, FL, USA.

出版信息

Adv Exp Med Biol. 2013;789:257-264. doi: 10.1007/978-1-4614-7411-1_35.

Abstract

Interleukin 11 (IL-11) is a multifunctional cytokine isolated from bone marrow (BM)-derived stromal cells that promotes hematopoiesis and prolongs the life span of lethally irradiated animals. However, the underlying mechanism for the protective effect of IL-11 on BM is unclear. In this study, we explored the effect of IL-11 on irradiated BM cells. Freshly harvested BM cells were pretreated with 20 ng/ml of recombinant IL-11 for 30 min, irradiated with a dose of 0.5 Gy, cultured for 24 h, and then subjected to several assays. In vitro data showed that, as compared to the vehicle controls, IL-11: (1) reduced the production of reactive oxygen species; (2) reduced the alteration of mitochondrial membrane potential; (3) increased MitoTracker staining, suggesting that the number of mitochondria and their functions were better maintained; and (4) reduced apoptosis of BM cells and enhanced BM cell proliferation. In vivo studies of mice pretreated with saline or 100 μg/kg of IL-11 at 12 and 2 h before 10-Gy total body irradiation (TBI) demonstrated that G-CSF and IL-6 were significantly upregulated, whereas IL-2 and IL-4 were reduced. We found that IL-11 protects mitochondrial functions, acts with G-CSF and IL-6 to stimulate the growth of radiation-damaged BM, and reduces the immune response to radiation injury.

摘要

白细胞介素 11(IL-11)是一种从骨髓(BM)衍生的基质细胞中分离出来的多功能细胞因子,它促进造血,并延长致死性辐照动物的寿命。然而,IL-11 对 BM 的保护作用的潜在机制尚不清楚。在这项研究中,我们探讨了 IL-11 对辐照 BM 细胞的影响。新鲜收获的 BM 细胞用 20ng/ml 的重组 IL-11 预处理 30 分钟,用 0.5Gy 的剂量辐照,培养 24 小时,然后进行几种测定。体外数据表明,与载体对照组相比,IL-11:(1)减少活性氧的产生;(2)减少线粒体膜电位的改变;(3)增加 MitoTracker 染色,表明线粒体的数量及其功能更好地维持;(4)减少 BM 细胞的凋亡并增强 BM 细胞的增殖。在 10Gy 全身照射(TBI)前 12 小时和 2 小时用生理盐水或 100μg/kg 的 IL-11 预处理的小鼠体内研究表明,G-CSF 和 IL-6 显著上调,而 IL-2 和 IL-4 下调。我们发现,IL-11 保护线粒体功能,与 G-CSF 和 IL-6 一起作用,刺激辐射损伤的 BM 生长,并减少对辐射损伤的免疫反应。

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