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Adenovirus-mediated IL-24 confers radiosensitization to human lung adenocarcinoma in vitro and in vivo

机译:腺病毒介导的IL-24在体内外赋予人类肺腺癌放射增敏作用

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The current paper aims to study the effect of adenovirus-mediated IL-24 (Ad-IL-24) on human lung adenocarcinoma in vitro and in vivo and determine its possible mechanism of action. The growth-suppressing and apoptosis-inducing effects of Ad-IL-24, radiotherapy, and Ad-IL-24+ radiotherapy (hereinafter referred to as the joint group) on SPC-A1 lung carcinoma cells were assessed by using 3-(4,5-dimethyliazolyl-2)-2,5-diphnyltetrazolium bromide and flow cytometry. A human lung model was established with SPC-A1 cells in nude mice. Groups of mice were subjected to multi-point injections to their tumors. Gross tumor volumes were measured dynamically. The ratios of tumor suppression and radiosensitization effect were evaluated according to the method of probability sum Q values. The expressions of Bax, Bcl-2, Survivin, and Caspase-3 in tumor samples were detected by immunohistochemistry. The ratios of inhibition and apoptosis in the joint group were higher than those in the individual Ad-IL-24 and radiotherapy groups. In vitro, the joint group suppressed tumor growth conspicuously, showing a weight inhibition rate of about 64 %. The expressions of FasL, Bax and Caspase-3 were upregulated in the joint group, while the expressions of Cox,Bcl-2,VEGF,CD34 and Survivin were downregulated. The current study proves that Ad-IL-24 suppresses growth of SPC-A1 cells both in vitro and in vivo. Its functions appear to be related to cell apoptosis and antiangiogenesis.
机译:本论文旨在研究腺病毒介导的IL-24(Ad-IL-24)对人肺腺癌的体外和体内作用,并确定其可能的作用机制。用3-(4)评估Ad-IL-24,放射疗法和Ad-IL-24 +放射疗法(以下称为联合组)对SPC-A1肺癌细胞的生长抑制和凋亡诱导作用。 1,5-二甲基偶氮基-2)-2,5-二苯基四唑溴化物和流式细胞仪。用裸鼠中的SPC-A1细胞建立了人肺模型。对小鼠组进行多点注射以治疗其肿瘤。动态测量肿瘤总体积。根据概率总和Q值的方法评估肿瘤抑制率和放射增敏作用的比率。通过免疫组织化学检测肿瘤样品中Bax,Bcl-2,Survivin和Caspase-3的表达。联合组的抑制和凋亡率高于单独的Ad-IL-24和放疗组。在体外,关节组显着抑制肿瘤生长,显示出约64%的体重抑制率。联合组中FasL,Bax和Caspase-3的表达上调,而Cox,Bcl-2,VEGF,CD34和Survivin的表达下调。当前的研究证明,Ad-IL-24在体外和体内均抑制SPC-A1细胞的生长。它的功能似乎与细胞凋亡和抗血管生成有关。

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