| Literature DB >> 28102523 |
Yongbin Mou1,2, Yun Xing2,3, Hongyan Ren2,4, Zhihua Cui2, Yu Zhang5, Guangjie Yu2,4, Walter J Urba6, Qingang Hu7, Hongming Hu8.
Abstract
Magnetic nanoparticles (NPs) of superparamagnetic iron oxide (SPIO) have been explored for different kinds of applications in biomedicine, mechanics, and information. Here, we explored the synthetic SPIO NPs as an adjuvant on antigen cross-presentation ability by enhancing the intracellular delivery of antigens into antigen presenting cells (APCs). Particles with different chemical modifications and surface charges were used to study the mechanism of action of antigen delivery. Specifically, two types of magnetic NPs, γFe2O3/APTS (3-aminopropyltrimethoxysilane) NPs and γFe2O3/DMSA (meso-2, 3-Dimercaptosuccinic acid) NPs, with the same crystal structure, magnetic properties, and size distribution were prepared. Then, the promotion of T-cell activation via dendritic cells (DCs) was compared among different charged antigen coated NPs. Moreover, the activation of the autophagy, cytosolic delivery of the antigens, and antigen degradation mediated by the proteasome and lysosome were measured. Our results indicated that positive charged γFe2O3/APTS NPs, but not negative charged γFe2O3/DMSA NPs, enhanced the cross-presentation ability of DCs. Increased cross-presentation ability induced by γFe2O3/APTS NPs was associated with increased cytosolic antigen delivery. On the contrary, γFe2O3/DMSA NPs was associated with rapid autophagy. Overall, our results suggest that antigen delivered in cytoplasm induced by positive charged particles is beneficial for antigen cross-presentation and T-cell activation. NPs modified with different chemistries exhibit diverse biological properties and differ greatly in their adjuvant potentials. Thus, it should be carefully considered many different effects of NPs to design effective and safe adjuvants.Entities:
Keywords: Adjuvant; Antigen cross-presentation; Dendritic cells; Superparamagnetic iron oxide
Year: 2017 PMID: 28102523 PMCID: PMC5247387 DOI: 10.1186/s11671-017-1828-z
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1pH-dependent zeta potential curves of γFe2O3 NPs coated with different charged molecules
Fig. 2γFe2O3 NPs with different charge molecules active Mutu DCs cross-presentation
Fig. 3Cross-presentation of OVA protein by DCs through TAP1 passway
Fig. 4Cross-presentation of OVA protein through proteasome in Mutu DCs
Fig. 5a DCs, which were without γFe O NPs labeling, had round shape and the cytoplasm was uniform. The scale bar represents 1μm. DCs labeled with γFe O /APTS (b) and γFe O /DMSA (c) were imaged by the magnification of 600 nm
Fig. 6Autophagy in Mutu DCs pulsed with γFe2O3 NPs coated with different polymers
Fig. 7OVA protein absorbed by NPs
Fig. 8OVA expression in the cytosol and total lysate of DC