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Fate of TLR-1/TLR-2 agonist functionalised pDNA nanoparticles upon deposition at the human bronchial epithelium in vitro.

机译:TLR-1 / TLR-2激动剂在体外沉积在人支气管上皮上的功能性化了pDNA纳米颗粒的命运。

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摘要

BACKGROUND: Plasmid DNA vaccination is a promising approach, but studies in non-human primates and humans failed to achieve protective immunity. To optimise this technology further with focus on pulmonary administration, we developed and evaluated an adjuvant-equipped DNA carrier system based on the biopolymer chitosan. In more detail, the uptake and accompanying immune response of adjuvant Pam3Cys (Toll-like receptor-1/2 agonist) decorated chitosan DNA nanoparticles (NP) were explored by using a three-dimensional (3D) cell culture model of the human epithelial barrier. Pam3Cys functionalised and non-functionalised chitosan DNA NP were sprayed by a microsprayer onto the surface of 3D cell cultures and uptake of NP by epithelial and immune cells (blood monocyte-derived dendritic cells (MDDC) and macrophages (MDM)) was visualised by confocal laser scanning microscopy. In addition, immune activation by TLR pathway was monitored by analysis of interleukin-8 and tumor necrosis factor-α secretions (ELISA).RESULTS: At first, a high uptake rate into antigen-presenting cells (MDDC: 16-17%; MDM: 68-75%) was obtained. Although no significant difference in uptake patterns was observed for Pam3Cys adjuvant functionalised and non-functionalised DNA NP, ELISA of interleukin-8 and tumor necrosis factor-α demonstrated clearly that Pam3Cys functionalisation elicited an overall higher immune response with the ranking of Pam3Cys chitosan DNA NPâeuro0/00>âeuro0/00chitosan DNA NPâeuro0/00=âeuro0/00DNA unloaded chitosan NPâeuro0/00>âeuro0/00control (culture medium).CONCLUSIONS: Chitosan-based DNA delivery enables uptake into abluminal MDDC, which are the most immune competent cells in the human lung for the induction of antigen-specific immunity. In addition, Pam3Cys adjuvant functionalisation of chitosan DNA NP enhances significantly an environment favoring recruitment of immune cells together with a Th1 associated (cellular) immune response due to elevated IL-8 and TNF-α levels. The latter renders this DNA delivery approach attractive for potential DNA vaccination against intracellular pathogens in the lung (e.g., Mycobacterium tuberculosis or influenza virus).
机译:背景:质粒DNA疫苗接种是一种很有前途的方法,但是在非人类灵长类动物和人类中的研究未能获得保护性免疫。为了进一步优化这项技术(重点是肺部给药),我们开发和评估了基于生物聚合物壳聚糖的佐剂配备的DNA载体系统。更详细地,通过使用人类上皮屏障的三维(3D)细胞培养模型探索佐剂Pam3Cys(Toll样受体-1/2激动剂)修饰的壳聚糖DNA纳米颗粒(NP)的摄取及其伴随的免疫应答。通过微喷雾器将Pam3Cys功能化和非功能化的壳聚糖DNA NP喷涂到3D细胞培养物的表面上,并通过共聚焦观察上皮和免疫细胞(血单核细胞衍生的树突状细胞(MDDC)和巨噬细胞(MDM))对NP的吸收激光扫描显微镜。此外,通过白细胞介素8和肿瘤坏死因子-α分泌物的分析(ELISA)监测通过TLR途径的免疫激活。结果:首先,首先是抗原呈递细胞的高摄取率(MDDC:16-17%; MDM:68-75%)。虽然没有观察到Pam3Cys佐剂功能化和非功能化的DNA NP摄取模式的显着差异,白介素8和肿瘤坏死因子-α的ELISA清楚地表明,Pam3Cys的功能化引发了总体更高的免疫反应与Pam3Cys壳聚糖DNA的排名NPâeuro0/ 00>âeuro0/ 00壳聚糖DNANPâeuro0/ 00 =âeuro0/ 00DNA脱乙酰壳多糖NPâeuro0/ 00>âeuro0/ 00对照(培养基)。人肺用于诱导抗原特异性免疫。此外,壳聚糖DNA NP的Pam3Cys佐剂功能显着增强了有利于免疫细胞募集的环境以及由于升高的IL-8和TNF-α水平的Th1相关(细胞)免疫反应。后者使得这种DNA递送方法对于针对肺中的细胞内病原体(例如,结核分枝杆菌或流感病毒)的潜在DNA疫苗接种具有吸引力。

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