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Microfluidic self-assembly of folate-targeted monomolecular siRNA-lipid nanoparticles

机译:微流体的自组装folate-targeted单分子siRNA-lipid纳米颗粒

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Non-viral delivery of nucleic acids for therapies based on RNA interference requires a rational design and optimal self-assembly strategies. Nucleic acid particles need to be small, stable and functional in terms of selective cell uptake and controlled release of encapsulated nucleic acids. Here we report on small (similar to 38 nm) monomolecular nucleic acid/lipid particles (mNALPs) that contain single molecules of short double-stranded oligonucleotides covered by a tight, highly curved lipid bilayer. The particles consist of DOPE, DOTAP, DOPC and DSPE-PEG(2000) and are assembled with 21 bp double-stranded DNA or small interfering RNA by solvent exchange on a hydrodynamic-focusing microfluidic chip. In comparison to vortex mixing by hand this method increases the encapsulation efficiency by 20%, and yields particles with a narrower size distribution, negligible aggregate formation and high stability in blood plasma and serum. Modification of mNALPs with folate-conjugated PEG-lipids results in specific binding and uptake by epithelial carcinoma KB cells overexpressing folate receptors. Binding is significantly reduced by competitive inhibition using free folate and is not observed with non-targeted mNALPs, revealing high specificity. The functionalized mNALPs show gene silencing in the presence of chloroquine, an endosome-destabilizing agent. Together, the robust self-assembly of small-sized mNALPs with their high stability and receptor-specific cell uptake demonstrate that the tight, PEGgrafted lipid-bilayer encapsulation may offer a promising approach towards the delivery of short double-stranded oligonucleotides.
机译:病毒性的核酸疗法基于RNA干扰需要理性设计和优化自组装策略。核酸颗粒要小,稳定和功能的选择性细胞吸收和控制释放封装核酸酸。单分子核酸/脂质颗粒(mNALPs)包含单分子短双链寡核苷酸由一个紧,高度弯曲的脂质双分子层。包括涂料、DOTAP DOPC和DSPE-PEG (2000)并与21 bp双链DNA组装或小干扰RNA通过溶剂交换hydrodynamic-focusing微流控芯片。该方法比较手工涡混合提高封装效率20%,和收益率粒子尺寸较小分布,聚集形成和可以忽略不计高稳定的血浆和血清。修改mNALPs folate-conjugatedPEG-lipids导致特定的绑定和吸收由上皮癌KB细胞overexpressing叶酸受体。减少使用免费的竞争性抑制作用叶酸和一道没有观察到mNALPs,揭示高特异性。功能化mNALPs显示的基因沉默氯喹的存在endosome-destabilizing代理。健壮的小型mNALPs自组装高稳定性和针对受体细胞吸收证明紧,PEGgrafted脂双分子层封装可能提供一种很有前途的方法对短的交付双链寡核苷酸。

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