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首页> 外文期刊>Cancer gene therapy >In vivo growth inhibitory effect of iterative wild-type p53 gene transfer in human head and neck carcinoma xenografts using glucosylated polyethylenimine nonviral vector
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In vivo growth inhibitory effect of iterative wild-type p53 gene transfer in human head and neck carcinoma xenografts using glucosylated polyethylenimine nonviral vector

机译:糖基化聚乙烯亚胺非病毒载体对人头颈癌异种移植物中迭代野生型p53基因转移的体内生长抑制作用

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Polyethylenimine (PEI) derivatives are polycationic nonviral vectors for gene transfer. Previous results achieved in vitro in head and neck cancer cells demonstrated that glucosylated PEI yields higher gene transfer efficiency and longer transgene expression than unsubstituted PEI. Using glucosylated PEI, p53 gene transfer was successfully achieved with subsequent recovery of P53 protein expression and induction of spontaneous apoptosis. The present study reports in vivo data achieved in human head and neck squamous cell carcinoma xenografted mice. Using biotinylated PEI and histochemistry analysis, the vector was found to diffuse in the proliferating cells of the tumor tissue, sparing necrotic areas. No diffusion was observed inside keratinized area composed of nonproliferating, mature differentiated cells. Using green fluorescent protein (GFP) transfection and fluorescence microscopy, the transgene expression was mainly observed at the periphery of the tumor containing proliferating cells. GFP expression appeared lower inside the tumor depth. Quantitative transgene expression kinetics was then determined using luciferase as reporter gene. The maximal transgene expression was achieved 48 hours after intratumoral injection of glucosylated PEI/DNA complexes. The highest gene transfer efficacy was achieved 48 hours after two intratumoral injection. After transfection of wild-type p53, tumor growth inhibition was observed in tumor-bearing mice receiving intratumoral injection of glucosylated PEI/DNA complexes repeated twice weekly. Tumor growth inhibition was maintained under continuous treatment using the same schedule. In all experiments, no noticeable toxicity was observed. The present results demonstrate the feasibility and the tumor growth inhibition potency of nonviral gene transfer using glucosylated polyethylenimine.
机译:聚乙烯亚胺(PEI)衍生物是用于基因转移的聚阳离子非病毒载体。先前在头颈癌细胞中体外获得的结果表明,与未取代的PEI相比,糖基化的PEI具有更高的基因转移效率和更长的转基因表达。使用糖基化的PEI,成功地实现了p53基因转移,随后恢复了P53蛋白表达并诱导了自发凋亡。本研究报告了在人类头颈部鳞状细胞癌异种移植小鼠中获得的体内数据。使用生物素化的PEI和组织化学分析,发现该载体在肿瘤组织的增殖细胞中扩散,保留了坏死区域。在由不增殖的成熟分化细胞组成的角化区域内未观察到扩散。使用绿色荧光蛋白(GFP)转染和荧光显微镜检查,主要在含有增殖细胞的肿瘤外围观察到转基因表达。 GFP表达在肿瘤深度内显得较低。然后使用荧光素酶作为报道基因确定定量的转基因表达动力学。肿瘤内注射糖基化PEI / DNA复合物48小时后,达到最大的转基因表达。两次肿瘤内注射后48小时达到了最高的基因转移效率。转染野生型p53之后,在荷瘤小鼠体内观察到肿瘤生长抑制,该小鼠接受瘤内注射糖基化PEI / DNA复合物,每周重复两次。在相同的时间表下连续治疗维持肿瘤生长抑制。在所有实验中,均未观察到明显的毒性。本结果证明了使用糖基化聚乙烯亚胺非病毒基因转移的可行性和肿瘤生长抑制能力。

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