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Gene silencing effect of SiRNA-magnetic modified with biodegradable copolymer nanoparticles on hTERT gene expression in lung cancer cell line

机译:可生物降解共聚物纳米粒子修饰的SiRNA的基因沉默对肺癌细胞hTERT基因表达的影响

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Abstract Background: Telomerase is expressed in most of malignant cells, including lung cancer cells. The success of small interfering RNA (siRNA) in silencing of the telomerase catalytic subunit depends upon carriers ability to efficiently deliver therapeutic agent to cells with minimal toxicity and most biocompatibility. In this study, a potential carrier for efficient delivery was assessed by siRNA encapsulating into Iron MNPs modified with biodegradable polyester nanoparticles consisting of PLGA and PEG. Results: Data analysis shows that the self-assemble diblock copolymers were synthesized, and then the siRNA designed against hTERT catalytic subunit was encapsulated. Also, the rate of telomerase gene expression in equivalent with magnetic copolymers/siRNA was lower than that of free siRNA (P = 0.001). Conclusions: In conclusion, regarding the enhancing of siRNA stability by magnetic copolymer, the expression of telomerase gene was significantly lower in the cells treated with siRNA-magnetic copolymers than those treated with free siRNA.
机译:摘要背景:端粒酶在包括肺癌细胞在内的大多数恶性细胞中都有表达。小干扰RNA(siRNA)在端粒酶催化亚基沉默中的成功取决于载体以最小的毒性和最大的生物相容性将治疗剂有效地递送至细胞的能力。在这项研究中,通过将siRNA封装到用PLGA和PEG组成的可生物降解聚酯纳米粒子修饰的铁MNP中,评估了有效递送的潜在载体。结果:数据分析表明,合成了自组装的二嵌段共聚物,然后包裹了针对hTERT催化亚基设计的siRNA。同样,与磁性共聚物/ siRNA等效的端粒酶基因表达速率也低于游离siRNA(P = 0.001)。结论:总之,关于通过磁性共聚物增强siRNA的稳定性,端粒酶基因的表达在用siRNA-磁性共聚物处理的细胞中明显低于用游离siRNA处理的细胞。

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