首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Effectiveness of Small Interfering RNA Delivery via Arginine-Rich Polyethylenimine-Based Polyplex in Metastatic and Doxorubicin-Resistant Breast Cancer Cells
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Effectiveness of Small Interfering RNA Delivery via Arginine-Rich Polyethylenimine-Based Polyplex in Metastatic and Doxorubicin-Resistant Breast Cancer Cells

机译:小干扰RNA递送通过精氨酸富乙基聚乙基菊氨酸在转移和多柔比蛋白抗性乳腺癌细胞中的有效性

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Poor cellular uptake, rapid degradation in the presence of serum, and inefficient transfection are some of the major barriers in achieving therapeutic efficacy of naked small interfering RNAs (siRNAs). We investigated the efficacy of the polyplex formulated using our synthesized polymer, polyethylene glycol (PEG)-modified L-arginine oligo(-alkylaminosiloxane) that is grafted with poly(ethyleneimine) (PEI) for siRNA delivery. We hypothesized that the polyplex formulated using the polymer with a balanced composition of PEI for siRNA condensation and its protection, PEG for polyplex stability and to minimize the PEI-associated toxicity, and with arginine facilitating cellular uptake would overcome the aforementioned issues with siRNA delivery. We tested our hypothesis using antiluciferase si RNA in luciferase-expressing metastatic breast cancer cells (MDA-MB-231-Luc-D3H2LN) and anti-ABCB1 siRNA against an efflux membrane protein, ABCB1, in doxorubicin DOX)-resistant breast cancer cells (MCF-7/Adr). The results demonstrated that the polyplex at an optimal nucleotide/polymer ratio is stable in the presence of excess polyanions, has no cellular toxicity, and protects siRNA from RNase degradation. Transfection of MDA-MB-231-Luc-D3H2LN cells with antiluciferase siRNA polyplex showed almost complete knockdown of luciferase expression. In MCF-7/Adr cells, transfection with anti-ABCB1 siRNA effectively downregulated its target efflux protein, ABCB1; increased cellular uptake of DOX; and enhanced its cytotoxic effect. However, the cotreatment did not completely overcome drug resistance, suggesting that further optimization is needed and/or a mechanism(s) other than the efflux protein ABCB1 may be involved in drug resistance. In conclusion, our polyplex is effective for siRNA delivery and can be explored for different therapeutic applications.
机译:细胞摄取不良,血清存在的快速降解,效率低下转染是实现裸体小干扰RNA(siRNA)的治疗效果的一些主要障碍。我们研究了使用合成聚合物,聚乙二醇(PEG)制备的聚乙二醇(PEG)制备的聚乙二醇(PEG)制备的L-精氨酸寡核苷酸寡聚( - 烷基氨基硅氧烷)与用于siRNA递送的聚(乙基亚胺)(PEI)接枝的疗效。我们假设使用聚合物配制的多络合物用具有均匀的PEI的平衡组合物进行SiRNA缩合及其保护,用于多分布稳定性,并最小化PEI相关毒性,并且具有精氨酸促进细胞摄取将克服先前的siRNA递送的问题。我们在荧光素酶 - 表达转移性乳腺癌细胞(MDA-MB-231-LUC-D3H2LN)中的降琥珀酶Si RNA和抗-ABB1 siRNA抵抗出鼻膜蛋白,在多柔比蛋白DOX中的抗-BCB1,在多柔比蛋白DOX中的抗-BCB1)中测试了我们的假设。 - 乳腺癌细胞( MCF-7 / ADR)。结果表明,在多种聚膜存在下,最佳核苷酸/聚合物比的多分布在过量的聚膜存在下稳定,没有细胞毒性,并保护siRNA免受RNase降解的影响。用防灰酶siRNA多分发转染MDA-MB-231-LUC-D3H2LN细胞的透明素酶表达的敲除。在MCF-7 / ADR细胞中,用抗ABCB1 siRNA的转染有效地下调其目标流出蛋白ABCB1;增加了DOX的细胞吸收;并增强其细胞毒性效果。然而,加元并未完全克服耐药性,表明需要进一步优化,并且除了外排蛋白ABCB1之外的方法可以参与耐药性。总之,我们的多络合物对于siRNA递送是有效的,可以针对不同的治疗应用探索。

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