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首页> 外文期刊>International Journal of Nanomedicine >pA chemoenzymatically synthesized cholesterol-g-poly(amine-co-ester)-mediated emp53/em gene delivery for achieving antitumor efficacy in prostate cancer/p
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pA chemoenzymatically synthesized cholesterol-g-poly(amine-co-ester)-mediated emp53/em gene delivery for achieving antitumor efficacy in prostate cancer/p

机译:>化学酶地合成的胆固醇-G-聚(胺 - CO-酯) - 介导的 P53 基因递送,用于在前列腺癌中实现抗肿瘤效果

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Background: An amphiphilic cationic copolymer cholesterol-g-poly(amine-co-ester), namely Chol-g-PMSC-PPDL synthesized in a chemoenzymatic route has been utilized as a carrier for p53 gene delivery to check its antitumor efficacy, using human prostate cancer cell line PC-3 (p53 null) as a model. Materials and methods: The transfection efficiency was measured by quantitative PCR and Western blotting assay. The anti-proliferative effect was detected using MTT method, colony formation assay and Live/Dead staining. The anti-migration effect was evaluated through wound healing and Transwell migration assays. Results: The transfection efficiency assay indicated that the carrier-mediated p53 gene transfection could dramatically enhance the intracellular p 53 expression level. Through p53 gene delivery, obvious anti-proliferative effect could be detected which was elucidated to be associated with the simultaneous activation of mitochondrial-dependent apoptosis pathway and cell cycle arrest at G1 phase. Meanwhile, the anti-migration effect could be obtained after p53 gene transfection. Conclusion: Chol-g-PMSC-PPDL-mediated p 53 gene transfection could potentially be employed as a promising strategy for achieving effective anti-tumor response.
机译:背景:在化学酶途径中合成的两亲阳离子共聚物胆固醇-G-聚(胺 - 共酯),即合成的Chol-G-PMSC-PPDL已被用作P53基因递送的载体以检查其抗肿瘤功效,使用人类前列腺癌细胞系PC-3(P53 NULL)作为模型。材料和方法:通过定量PCR和Western印迹测定测量转染效率。使用MTT方法,菌落形成测定和活/染色来检测抗增殖效果。通过伤口愈合和Transwell迁移测定来评估抗迁移效应。结果:转染效率测定表明,载体介导的P53基因转染可以显着增强细胞内P 53表达水平。通过P53基因递送,可以检测到明显的抗增殖效果,阐明与G1相同时激活线粒体依赖性凋亡途径和细胞循环捕获相关。同时,在P53基因转染后可以获得抗迁移效应。结论:Chol-G-PMSC-PPDL介导的P 53基因转染可能是潜在的造成有效抗肿瘤反应的有希望的策略。

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