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Development of New Targeted Inulin Complex Nanoaggregates for siRNA Delivery in Antitumor Therapy

机译:抗肿瘤治疗中的siRNA递送新靶向菊粉复合物纳米聚纳米聚糖的研制

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摘要

Here, a novel strategy of formulating efficient polymeric carriers based on the already described INU-IMI-DETA for gene material whose structural, functional, and biological properties can be modulated and improved was successfully investigated. In particular, two novel derivatives of INU-IMI-DETA graft copolymer were synthesized by chemical functionalisation with epidermal growth factor (EGF) or polyethylenglycol (PEG), named INU-IMI-DETA-EGF and INU-IMI-DETA-PEG, respectively, in order to improve the performance of already described “inulin complex nanoaggregates” (ICONs). The latter were thus prepared by appropriately mixing the two copolymers, by varying each component from 0 to 100 wt% on the total mixture, named EP-ICONs. It was seen that the ability of the INU-IMI-DETA-EGF/INU-IMI-DETA-PEG polymeric mixture to complex siGL3 increases with the increase in the EGF-based component in the EP-ICONs and, for each sample, with the increase in the copolymer:siRNA weight ratio (R). On the other hand, the susceptibility of loaded siRNA towards RNase decreases with the increase in the pegylated component in the polymeric mixture. At all R values, the average size and the zeta potential values are suitable for escaping from the RES system and suitable for prolonged intravenous circulation. By means of biological characterisation, it was shown that MCF-7 cells are able to internalize mainly the siRNA-loaded into EGF-decorated complexes, with a significant difference from ICONs, confirming its targeting function. The targeting effect of EGF on EP-ICONs was further demonstrated by a competitive cell uptake study, i.e., after cell pre-treatment with EGF. Finally, it was shown that the complexes containing both EGF and PEG are capable of promoting the internalisation and therefore the transfection of siSUR, a siRNA acting against surviving mRNA, and to increase the sensitivity to an anticancer agent, such as doxorubicin.
机译:这里,成功地研究了基于已经描述的基因材料的基因材料的有效聚合物载体的新策略,其结构,功能和生物学特性的基因材料可以被调节和改进。特别地,通过与表皮生长因子(EGF)或聚乙二醇(PEG)的化学官能化分别分别由表皮生长因子(EGF)或聚乙二醇(PEG)分别被称为INU-IMI-DETA-EGA-EGA-PEG的化学官能化的两种新衍生物,为了提高已经描述的“菊粉复合纳米聚集”(图标)的性能。因此,通过适当地混合两种共聚物来制备后者通过在总混合物中改变0至100重量%的共聚物来制备。有人看出,Inu-IMI-DETA-EGF / INU-IMI-DETA-PEG聚合物混合物与复合Sig13的能力随着EP-ICON中的基于EGF的组分的增加而增加,并且对于每个样品共聚物的增加:siRNA重量比(R)。另一方面,随着聚合物混合物中的聚乙二醇化成分的增加,载荷的siRNA朝向RNase的敏感性降低。在所有R值下,平均尺寸和ζ电位值适用于从RES系统逸出,适用于延长的静脉内循环。通过生物学表征,显示MCF-7细胞能够以EGF装饰复合物的主要载入的分子内化,与图标有显着差异,确认其靶向功能。通过竞争性细胞摄取研究,即在用EGF预处理后,进一步证明了EGF对EP-图标的靶向效果。最后,表明含有EGF和PEG的络合物能够促进内化,因此能够转染Sisur,一种作用于存活mRNA的siRNA,并增加对抗癌剂的敏感性,例如多柔比星。

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