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首页> 外文期刊>Nucleic acids research >A KALA-modified lipid nanoparticle containing CpG-free plasmid DNA as a potential DNA vaccine carrier for antigen presentation and as an immune-stimulative adjuvant
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A KALA-modified lipid nanoparticle containing CpG-free plasmid DNA as a potential DNA vaccine carrier for antigen presentation and as an immune-stimulative adjuvant

机译:KALA修饰的脂质纳米颗粒,包含无CpG的质粒DNA,作为潜在的DNA疫苗载体,可用于抗原呈递和作为免疫刺激佐剂

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Technologies that delivery antigen-encoded plasmid DNA (pDNA) to antigen presenting cell and their immune-activation are required for the success of DNA vaccines. Here we report on an artificial nanoparticle that can achieve these; a multifunctional envelope-type nanodevice modified with KALA, a peptide that forms α-helical structure at physiological pH (KALA-MEND). KALA modification and the removal of the CpG-motifs from the pDNA synergistically boosted transfection efficacy. In parallel, transfection with the KALA-MEND enhances the production of multiple cytokines and chemokines and co-stimulatory molecules via the Toll-like receptor 9-independent manner. Endosome-fusogenic lipid envelops and a long length of pDNA are essential for this immune stimulation. Furthermore, cytoplasmic dsDNA sensors that are related to the STING/TBK1 pathway and inflammasome are involved in IFN-β and IL-1β production, respectively. Consequently, the robust induction of antigen-specific cytotoxic T-lymphoma activity and the resulting prophylactic and therapeutic anti-tumor effect was observed in mice that had been immunized with bone marrow-derived dendritic cells ex vivo transfected with antigen-encoding pDNA. Collectively, the KALA-MEND possesses dual functions; gene transfection system and immune-stimulative adjuvant, those are both necessary for the successful DNA vaccine.
机译:将DNA编码的质粒DNA(pDNA)传递到抗原呈递细胞及其免疫激活的技术是成功获得DNA疫苗所必需的。在这里,我们报告了可以实现这些目标的人造纳米粒子。一种用KALA修饰的多功能包膜型纳米器件,KALA是在生理pH下形成α螺旋结构的肽(KALA-MEND)。 KALA修饰和从pDNA中去除CpG-基序可协同提高转染效率。同时,用KALA-MEND进行转染可通过独立于Toll样受体9的方式增强多种细胞因子,趋化因子和共刺激分子的产生。内吞融合脂质包裹体和长的pDNA对于这种免疫刺激至关重要。此外,与STING / TBK1途径和炎性体有关的胞质dsDNA传感器分别与IFN-β和IL-1β的产生有关。因此,在已经用转染了抗原编码pDNA的骨髓源性树突状细胞进行免疫的小鼠中,观察到了抗原特异性细胞毒性T淋巴瘤活性的强力诱导以及由此产生的预防和治疗性抗肿瘤作用。 KALA-MEND集体具有双重功能。基因转染系统和免疫刺激佐剂,对于成功的DNA疫苗都是必需的。

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