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A DNA Microarray-based Analysis of the Host Response to a Nonviral Gene Carrier: A Strategy for Improving the Immune Response

机译:对非病毒基因载体的宿主反应的基于DNA芯片的分析:改善免疫反应的策略。

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摘要

The purpose of this study was to investigate the host response to systemically administered lipid nanoparticles (NPs) encapsulating plasmid DNA (pDNA) in the spleen using a DNA microarray. As a model for NPs, we used a multifunctional envelope-type nano device (MEND). Microarray analysis revealed that 1,581 of the differentially expressed genes could be identified by polyethylene glycol (PEG)-unmodified NP using a threefold change relative to the control. As the result of PEGylation, the NP treatment resulted in the reduction in the expression of most of the genes. However, the expression of type I interferon (IFN) was specifically increased by PEGylation. Based on the microarray and a pathway analysis, we hypothesize that PEGylation inhibited the endosomal escape of NP, and extended the interaction of toll-like receptor-9 (TLR9) with CpG-DNA accompanied by the production of type I IFN. This hypothesis was tested by introducing a pH-sensitive fusogenic peptide, GALA, which enhances the endosomal escape of PEGylated NP. As expected, type I IFN was reduced and interleukin-6 (IL-6) remained at the baseline. These findings indicate that a carrier design based on microarray analysis and the manipulation of intracellular trafficking constitutes a rational strategy for reducing the host immune response to NPs.
机译:这项研究的目的是调查宿主对使用DNA微阵列将脾脏中包裹质粒DNA(pDNA)的脂质纳米粒(NPs)全身给药的反应。作为NP的模型,我们使用了多功能信封型纳米器件(MEND)。微阵列分析显示,相对于对照,可以使用未改变的聚乙二醇(PEG)修饰的NP鉴定出1,581个差异表达基因。 PEG化的结果是,NP处理导致大多数基因的表达减少。但是,通过PEG化可以特异性地提高I型干扰素(IFN)的表达。基于微阵列和途径分析,我们假设聚乙二醇化可抑制NP的内体逸出,并延长Toll样受体9(TLR9)与CpG-DNA的相互作用,并伴随I型IFN的产生。通过引入pH敏感的融合肽GALA检验了该假设,该肽可增强PEG化NP的内体逸出。如预期的那样,I型干扰素减少,白介素6(IL-6)保持在基线水平。这些发现表明,基于微阵列分析和细胞内运输操纵的载体设计构成了减少宿主对NPs免疫反应的合理策略。

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