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Tumor necrosis factor-related apoptosis-inducing ligand gene on human colorectal cancer cell line HT29

机译:大肠癌细胞HT29的肿瘤坏死因子相关的凋亡诱导配体基因

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AIM: To evaluate the therapeutic efficiency of Tumor Necrosis Factor-related Apoptosis-inducing Ligand (TRAIL) gene on human colorectal cancer cell line HT29. METHODS: Human embryonal kidney cells transformed by introducing sheared fragments of Ad5 DNA (293 cell) were used for amplification of adenoviral vectors: Ad/GT-TRAIL,Ad/GT-Bax, Ad/GT-LacZ and Ad/PGK-GV16. Human colorectal cancer cell line HT29 was transfected with binary adenovirus-mediated TRAIL gene. Bax gene was used as positive control, LacZ gene was used as the vector control, and cells treated with PBS only were used as a mock control. The morphological changes, cell growth and apoptosis were measured by reversmicroscope, MTT method and flow cytometry. RESULTS: All adenoviral vectors titer determined by optical absorbency at A260nm were 1x10~(10) viral particle/ml(vp/ ml).Obviously morphological changes of HT29 cells were observed when infected with Ad/GT-TRAIL, and these changes were much more obviously when Ad/PGK-GV16 was coinfected. The cell suppression percentage and the percentage of apoptotic cells were 52.5 % and 16.5 % respectively when infected with Ad/GT-TRAIL alone, while combining with Ad/PGK-GV16, the growth of HT29 was suppressed by 85.2 % and the percentage of apoptotic cells was 35.9 %. It showed a significantly enhanced therapeutic efficiency with binary system (P<0.05). CONCLUSION: A binary adenoviral vector system provides an effective approach to amplify viral vectors that express potentially toxic gene, TRAIL. Ad/GT-TRAIL showed a significantly enhanced therapeutic efficiency for HT29 when coinfected with Ad/PGK-GV16. Ad/GT-TRAIL could induce apoptosis of HT29 and inhibit its growth.
机译:目的:评价肿瘤坏死因子相关凋亡诱导配体(TRAIL)基因对人结肠直肠癌细胞HT29的治疗效果。方法:通过导入Ad5 DNA剪切片段转化的人胚肾细胞(293细胞)用于扩增腺病毒载体:Ad / GT-TRAIL,Ad / GT-Bax,Ad / GT-LacZ和Ad / PGK-GV16。用二元腺病毒介导的TRAIL基因转染人结肠直肠癌细胞系HT29。 Bax基因用作阳性对照,LacZ基因用作载体对照,仅用PBS处理的细胞用作模拟对照。倒置显微镜,MTT法和流式细胞仪检测细胞形态,细胞生长和凋亡。结果:通过A260nm吸光度测定的所有腺病毒载体滴度均为1x10〜(10)病毒颗粒/ ml(vp / ml),感染Ad / GT-TRAIL后明显观察到HT29细胞的形态学变化,这些变化很大更明显的是Ad / PGK-GV16被并发感染。单独感染Ad / GT-TRAIL时,细胞抑制率和凋亡细胞率分别为52.5%和16.5%,而与Ad / PGK-GV16联合使用时,HT29的生长被抑制了85.2%,凋亡率被抑制了细胞为35.9%。二元系统显示出显着提高的治疗效率(P <0.05)。结论:二元腺病毒载体系统提供了一种有效的方法来扩增表达潜在毒性基因TRAIL的病毒载体。当与Ad / PGK-GV16共感染时,Ad / GT-TRAIL对HT29的治疗效率显着提高。 Ad / GT-TRAIL可诱导HT29凋亡并抑制其生长。

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