首页> 外文期刊>International Journal of Pharmaceutics >Folate-targeted amphiphilic cyclodextrin nanoparticles incorporating a fusogenic peptide deliver therapeutic siRNA and inhibit the invasive capacity of 3D prostate cancer tumours
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Folate-targeted amphiphilic cyclodextrin nanoparticles incorporating a fusogenic peptide deliver therapeutic siRNA and inhibit the invasive capacity of 3D prostate cancer tumours

机译:叶酸靶向两亲性环糊精纳米颗粒,其掺入融合肽递送治疗siRNA并抑制3D前列腺癌肿瘤的侵入能力

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Graphical abstract Display Omitted Abstract The main barrier to the development of an effective RNA interference (RNAi) therapy is the lack of a suitable delivery vector. Modified cyclodextrins have emerged in recent years for the delivery of siRNA. In the present study, a folate-targeted amphiphilic cyclodextrin was formulated using DSPE-PEG 5000 -folate to target prostate cancer cells. The fusogenic peptide GALA was included in the formulation to aid in the endosomal release of siRNA. Targeted nanoparticles were less than 200nm in size with a neutral surface charge. The complexes were able to bind siRNA and protect it from serum nucleases. Incubation with excess free folate resulted in a significant decrease in the uptake of targeted nanoparticles in LNCaP and PC3 cells, both of which have been reported to have differing pathways of folate uptake. There was a significant reduction in the therapeutic targets, ZEB1 and NRP1 at mRNA and protein level following treatment with targeted complexes. In preliminary functional assays using 3D spheroids, treatment of PC3 tumours with targeted complexes with ZEB1 and NRP1 siRNA resulted in more compact colonies relative to the untargeted controls and inhibited infiltration into the Matrigel? layer. ]]>
机译:抽象图形显示中省略摘要的主要障碍有效RNA干扰的发展(RNAi)的治疗是缺乏合适的递送载体。改性环糊精已经出现在最近几年的siRNA的交付。在本研究中,叶酸靶向两性环糊精,使用DSPE-PEG 5000 -folate到靶前列腺癌细胞配制。促融合肽GALA被包括在制剂中的siRNA的内体释放,以帮助。靶向纳米颗粒均小于200nm的尺寸具有中性表面电荷。该复合物能够结合siRNA和保护它免受血清核酸酶。孵化与过量的叶酸免费导致在LNCaP和PC3细胞靶向纳米粒子,两者都被报道有叶酸摄取的不同途径的摄取显著下降。有没有在治疗目标,ZEB1和NRP1一个显著减少mRNA及以下有针对性的治疗复合蛋白水平。在使用三维球状体,治疗PC3肿瘤的与ZEB1和NRP1的siRNA靶向复合物的初步功能性分析导致更紧凑的菌落相对于未靶向的控制和抑制渗入基质胶?层。 ]]>

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