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SPIO Enhance the Cross-Presentation and Migration of DCs and Anionic SPIO Influence the Nanoadjuvant Effects Related to Interleukin-1β

机译:SPIO增强DCS和阴离子SPIO的交叉呈现和迁移影响与白细胞介素-1β相关的纳米载体效果

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摘要

Abstract Superparamagnetic iron oxide nanoparticles (SPIO) have been synthesized and explored for use as carriers of various nanoadjuvants via loading into dendritic cells (DCs). In our study, homogeneous and superparamagnetic nanoparticles are susceptible to internalization by DCs and SPIO-pulsed DCs showed excellent biocompatibility and capacity for ovalbumin (OVA) cross-presentation. Herein, we found that SPIO-loaded DCs can promote the maturation and migration of DCs in vitro. SPIO coated with 3-aminopropyltrimethoxysilane (APTS) and meso-2,3-dimercaptosuccinic acid (DMSA), which present positive and negative charges, respectively, were prepared. We aimed to investigate whether the surface charge of SPIO can affect the antigen cross-presentation of the DCs. Additionally, the formation of interleukin-1β (IL-1β) was examined after treatment with oppositely charged SPIO to identify the nanoadjuvants mechanism. In conclusion, our results suggest that SPIO are biocompatible and can induce the migration of DCs into secondary lymph nodes. SPIO coated with APTS (SPIO/A+) exhibited excellent adjuvant potentials for the promotion of antigen cross-presentation and T cell activation and surpassed that of DMSA-coated nanoparticles (SPIO/D−). This process may be related to the secretion of IL-1β. Our study provides insights into the predictive modification of nanoadjuvants, which will be valuable in DC vaccine design and could lead to the creation of new adjuvants for applications in vaccines for humans.
机译:摘要已经合成了超顺磁性氧化铁纳米粒子(SPIO),并探索用作各种纳米载体的载体通过装入树突细胞(DC)。在我们的研究中,均匀和超顺磁性纳米颗粒易于通过DC和SPIO-脉冲DC的内化对卵烧蛋白(OVA)交叉呈现的优异的生物相容性和能力。在此,我们发现Spio-Loaded DC可以在体外促进DCS的成熟和迁移。涂有3-氨基丙基三甲氧基硅烷(APTS)和Meso-2,3-二巯基琥珀酸(DMSA)的硅藻,分别制备阳性和负电荷。我们旨在调查SPIO的表面电荷是否会影响DCS的抗原交叉呈递。另外,在用相反带电的SPIO治疗后检查白细胞介素-1β(IL-1β)的形成,以鉴定纳米载​​荷机制。总之,我们的研究结果表明SPIO是生物相容性的并且可以诱导DCS迁移到次级淋巴结中。涂有APTS(SPIO / A +)的硅藻表现出优异的辅助潜力,用于促进抗原交叉呈递和T细胞活化,并超越DMSA涂覆的纳米颗粒(SPIO / D-)。该过程可能与IL-1β的分泌有关。我们的研究提供了对纳米载荷的预测改性的见解,这对DC疫苗设计将有价值,并且可能导致为人类疫苗中的应用产生新的佐剂。

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