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Interaction of DNA-lesions induced by sodium fluoride and radiation and its influence in apoptotic induction in cancer cell lines

机译:氟化钠与辐射诱导的DNA损伤的相互作用及其对癌细胞株凋亡诱导的影响

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Fluoride is an essential trace element but also an environmental contaminant with major sources of exposure being drinking water, food and pesticides. Previous studies showed that sodium fluoride (NaF) at 5mM or more is required to induce apoptosis and chromosome aberrations and proposed that DNA damage and apoptosis play an important role in toxicity of excessive fluoride. The aim of this study is directed to understand the nature of DNA-lesions induced by NaF by allowing its interaction with radiation induced DNA-lesions. NaF 5mM was used after observing inability to induce DNA damages and apoptosis by single exposure with 50@mM or 1mM NaF. Co-exposure to NaF and radiation significantly increased the frequency of aberrant metaphases and exchange aberrations in human lymphocytes and arrested the cells in G1 stage instead of apoptotic death. Flow cytometric analysis, DNA fragmentation and PARP-cleavage analysis clearly indicated that 5mM NaF together with radiation (1Gy) induced apoptosis in both U87 and K562 cells due to down regulation of expression of anti-apoptotic proteins, like Bcl2 in U87 and inhibitors of apoptotic proteins like survivin and cIAP in K562 cells. This study herein suggested that single exposure with extremely low concentration of NaF unable to induce DNA lesions whereas higher concentration induced DNA lesions interact with the radiation-induced DNA lesions. Both are probably repaired rapidly thus showed increased interactive effect. Coexposure to NaF and radiation induces more apoptosis in cancer cell lines which could be due to increased exchange aberrations through lesions interaction and downregulating anti-apoptotic genes.
机译:氟化物是必不可少的微量元素,也是一种环境污染物,其主要暴露源是饮用水,食物和农药。先前的研究表明,需要5mM或更高的氟化钠(NaF)诱导细胞凋亡和染色体畸变,并提出DNA损伤和细胞凋亡在过量氟化物的毒性中起重要作用。这项研究的目的是通过允许NaF与辐射诱导的DNA损伤相互作用来了解NaF诱导的DNA损伤的性质。在观察到无法通过50mM或1mM NaF的单次暴露诱导DNA损伤和凋亡后,使用5mM NaF。共同暴露于NaF和辐射会显着增加人淋巴细胞异常中期和交换畸变的频率,并使细胞停滞在G1期而不是凋亡死亡。流式细胞仪分析,DNA片段化和PARP裂解分析清楚地表明,由于抗凋亡蛋白(如U87中的Bcl2和凋亡抑制剂)的表达下调,5mM NaF与放射线(1Gy)一起诱导U87和K562细胞凋亡。 K562细胞中的Survivin和cIAP等蛋白质。本文的这项研究表明,NaF浓度极低的单次照射无法诱导DNA损伤,而浓度较高的DNA损伤则与辐射诱导的DNA损伤相互作用。两者都可能很快修复,因此显示出增强的交互作用。暴露于NaF和辐射共同诱导​​癌细胞系中更多的凋亡,这可能是由于通过病变相互作用和下调抗凋亡基因增加交换畸变引起的。

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