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首页> 外文期刊>International Journal of Nanomedicine >Therapeutic efficiency of folated poly(ethylene glycol)-chitosan-graft-polyethylenimine-Pdcd4 complexes in H-ras12V mice with liver cancer
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Therapeutic efficiency of folated poly(ethylene glycol)-chitosan-graft-polyethylenimine-Pdcd4 complexes in H-ras12V mice with liver cancer

机译:叶酸聚乙二醇-壳聚糖-接枝-聚乙烯亚胺-Pdcd4复合物对H-ras12V肝癌小鼠的治疗效果

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Background: Chitosan and chitosan derivatives have been proposed as alternative and biocompatible cationic polymers for nonviral gene delivery. However, the low transfection efficiency and low specificity of chitosan is an aspect of this approach that must be addressed prior to any clinical application. In the present study, folated poly(ethylene glycol)-chitosan-graft-polyethylenimine (FPCP) was investigated as a potential folate receptor-overexpressed cancer cell targeting gene carrier. Methods: The FPCP copolymer was synthesized in two steps. In the first step, folate-PEG was synthesized by an amide formation reaction between the activated carboxyl groups of folic acid and the amine groups of bifunctional poly(ethylene glycol) (PEG). In the second step, FPCP was synthesized by an amide formation reaction between the activated carboxyl groups of folate-PEG and amine groups of CHI-g-polyethyleneimine (PEI). The composition of FPCP was characterized by 1H nuclear magnetic resonance. Results: FPCP showed low cytotoxicity in various cell lines, and FPCP-DNA complexes showed good cancer cell specificity as well as good transfection efficiency in the presence of serum. Further, FPCP-Pdcd4 complexes reduced tumor numbers and progression more effectively than PEI 25 kDa in H-ras12V liver cancer mice after intravenous administration. Conclusion: Our data suggest that FPCP, which has improved transfection efficiency and cancer cell specificity, may be useful in gene therapy for liver cancer.
机译:背景:壳聚糖和壳聚糖衍生物已被提出作为非病毒基因传递的替代和生物相容性阳离子聚合物。但是,壳聚糖的低转染效率和低特异性是该方法的一个方面,必须在任何临床应用之前解决。在本研究中,叶酸聚(乙二醇)-壳聚糖-接枝-聚乙烯亚胺(FPCP)被研究为潜在的叶酸受体过表达的癌细胞靶向基因载体。方法:分两步合成FPCP共聚物。第一步,通过叶酸的活化羧基与双功能聚乙二醇(PEG)的胺基之间的酰胺形成反应合成叶酸-PEG。在第二步中,通过叶酸-PEG的活化羧基与CHI-g-聚乙烯亚胺(PEI)的胺基之间的酰胺形成反应合成FPCP。 FPCP的组成以1H核磁共振为特征。结果:FPCP在各种细胞系中均显示出低细胞毒性,并且在存在血清的情况下,FPCP-DNA复合物显示出良好的癌细胞特异性以及良好的转染效率。此外,在静脉内给药后,FPCP-Pdcd4复合物在H-ras12V肝癌小鼠中比PEI 25 kDa更有效地减少了肿瘤数目和进展。结论:我们的数据表明,具有改善转染效率和癌细胞特异性的FPCP可能在肝癌的基因治疗中有用。

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