首页> 外文期刊>European journal of nuclear medicine >Beta-irradiation used for systemic radioimmunotherapy induces apoptosis and activates apoptosis pathways in leukaemia cells
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Beta-irradiation used for systemic radioimmunotherapy induces apoptosis and activates apoptosis pathways in leukaemia cells

机译:用于全身放射免疫疗法的β射线辐射可诱导白血病细胞凋亡并激活其凋亡途径

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Abstract. Beta-irradiation used for systemic radioimmunotherapy (RIT) is a promising treatment approach for high-risk leukaemia and lymphoma. In bone marrow-selective radioimmunotherapy, beta-irradiation is applied using iodine-131, yttrium-90 or rhenium-188 labelled ra-dioimmunoconjugates. However, the mechanisms by which beta-irradiation induces cell death are not understood at the molecular level. Here, we report that beta-irradiation induced apoptosis and activated apoptosis pathways in leukaemia cells depending on doses, time points and dose rates. After beta-irradiation, upregulation of CD95 ligand and CD95 receptor was detected and activation of caspases resulting in apoptosis was found. These effects were completely blocked by the broad-range caspase inhibitor zVAD-fmk. In addition, irradiation-mediated mitochondrial damage resulted in perturbation of mitochondrial membrane potential, caspase-9 activation and cytochrome c release. Bax, a death-promoting protein, was upregulated and Bcl-x_L, a death-inhibiting protein, was downregulated. We also found higher apoptosis rates and earlier activation of apoptosis pathways after gamma-irradiation in comparison to beta-irradiation at the same dose rate. Furthermore, irradiation-resistant cells were cross-resistant to CD95 and CD95-resistant cells were cross-resistant to irradiation, indicating that CD95 and irradiation used, at least in part, identical effector pathways. These findings demonstrate that beta-irradiation induces apoptosis and activates apoptosis pathways in leukaemia cells using both mitochondrial and death receptor pathways. Understanding the timing, sequence and molecular pathways of beta-irradiation-mediated apoptosis may allow rational adjustment of chemo- and radiotherapeutic strategies.
机译:抽象。用于全身放射免疫疗法(RIT)的Beta照射是一种用于高危白血病和淋巴瘤的有前途的治疗方法。在骨髓选择性放射免疫疗法中,使用碘131,钇90或rh 188标记的ra-dioimmunoconjugates进行β射线照射。但是,在分子水平上尚不清楚β-辐射诱导细胞死亡的机制。在这里,我们报道β辐射诱导白血病细胞凋亡和活化的凋亡途径,具体取决于剂量,时间点和剂量率。 β射线照射后,检测到CD95配体和CD95受体的上调,并发现了胱天蛋白酶的激活导致细胞凋亡。这些作用被宽范围的半胱天冬酶抑制剂zVAD-fmk完全阻断。此外,辐射介导的线粒体损伤导致线粒体膜电位,caspase-9激活和细胞色素c释放受到干扰。促进死亡的蛋白Bax被上调,而抑制死亡的蛋白Bcl-x_L被下调。我们还发现,与相同剂量率的β射线照射相比,γ射线照射后具有更高的凋亡率和更早的凋亡途径激活。此外,抗辐射细胞对CD95具有交叉抗性,而抗CD95细胞则对辐射具有交叉抗性,表明CD95和辐射至少部分地使用了相同的效应子途径。这些发现表明,使用线粒体途径和死亡受体途径,β射线照射可诱导白血病细胞凋亡并激活其凋亡途径。了解时间,序列和β射线辐射介导的细胞凋亡的分子途径可能允许合理调整化学和放射治疗策略。

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