首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >PH shift assembly of adenoviral serotype 5 capsid protein nanosystems for enhanced delivery of nanoparticles, proteins and nucleic acids
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PH shift assembly of adenoviral serotype 5 capsid protein nanosystems for enhanced delivery of nanoparticles, proteins and nucleic acids

机译:腺病毒血清型5衣壳蛋白纳米系统的PH移位组装可增强纳米颗粒,蛋白质和核酸的递送

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摘要

Empty adenovirus serotype 5 (Ad5) capsids devoid of viral genome were developed as a novel delivery system for nanoparticles, proteins, and nucleic acids. Ad5 capsids of 110 nm diameter undergo an increase in particle size to 1637 nm in 1 mM acetic acid at pH 4.0 and then shrink to 60 nm, following pH reversal to 7.4. These pH shifts induced reversible changes in capsid zeta potential and secondary structure and irreversible changes in tertiary structure of capsid proteins. Using pH shift dependent changes in capsid size and structure, 20 nm fluorescent nanoparticles, FITC-BSA, and Alexa Fluor? 488 conjugated siRNA were encapsulated with high efficiency in Ad5 capsids, as confirmed by electron microscopy and/or flow cytometry. HEK cell uptake with capsid delivery system was 7.8-, 7.4-, and 2.9-fold greater for nanoparticles, FITC-BSA, and Alexa-siRNA, respectively, when compared to plain solutes. Physical mixtures of capsids and fluorescent solutes exhibited less capsid associated fluorescence intensity and cell uptake. Further, unlike physical mixture, pH shift assembled Ad5 capsids protected siRNA from RNase degradation. Ad5 capsids before and after pH shift exhibited endolysosomal escape. Thus, empty Ad5 capsids can encapsulate a variety of solutes based on pH shift assembly, resulting in enhanced cellular delivery.
机译:没有病毒基因组的空腺病毒血清型5(Ad5)衣壳被开发为一种新型的纳米颗粒,蛋白质和核酸传递系统。在pH值为4.0的1 mM乙酸中,直径110 nm的Ad5衣壳的粒径增加至1637 nm,然后收缩至60 nm。这些pH值变化引起衣壳ζ电位和二级结构的可逆变化,以及衣壳蛋白三级结构的不可逆变化。使用衣壳大小和结构,20 nm荧光纳米颗粒,FITC-BSA和Alexa Fluor?如电子显微镜和/或流式细胞术所证实,将488个缀合的siRNA高效封装在Ad5衣壳中。与普通溶质相比,纳米颗粒,FITC-BSA和Alexa-siRNA的衣壳递送系统对HEK细胞的摄取分别高7.8、7.4和2.9倍。衣壳和荧光溶质的物理混合物显示出更少的衣壳相关荧光强度和细胞摄取。此外,与物理混合物不同,pH移位组装的Ad5衣壳可保护siRNA免受RNase降解。 pH改变之前和之后的Ad5衣壳均显示溶酶体逸出。因此,空的Ad5衣壳可以基于pH移位装配来封装各种溶质,从而增强细胞传递。

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