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首页> 外文期刊>Journal of biomedical nanotechnology >Real-Time Imaging Tracking of a Dual Fluorescent Vaccine Delivery System Based on Ovalbumin Loaded Zinc Phthalocyanine-Incorporated Copolymer Nanoparticles
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Real-Time Imaging Tracking of a Dual Fluorescent Vaccine Delivery System Based on Ovalbumin Loaded Zinc Phthalocyanine-Incorporated Copolymer Nanoparticles

机译:基于卵霉型锌酞菁掺入的共聚物纳米颗粒的双荧光疫苗递送系统实时成像跟踪

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The vaccine delivery process plays a significant role for antigen-specific immune responses, which directly determines the effect of immunotherapy. It is crucial to reveal the real-time process of the vaccine release and the status of the implanted carrier in vivo. Herein, a dual fluorescent vaccine delivery system was monitored with the rhodamine-ovalbumin loaded zinc phthalocyanine conjugated nanoparticles (PHA-OVA NPs) to explore the vaccine delivery process. The PHA-OVA NPs showed a sustained release of ovalbumin in vitro and could significantly enhance the uptake of antigen by dendritic cells (DCs). The PHA-OVA NPs could also upregulate the levels of costimulatory molecules on the surface of DCs, suggesting an enhanced ability of the antigen delivery system to promote antigen presentation to antigen-special T cells compared to soluble antigen. The fates of the ovalbumin and the PHA NPs were tracked simultaneously in vivo using the multispectral fluorescence imaging system and the results showed that the antigen was carried to the lymphoid organs by the delivery vehicle. The multispectral fluorescence imaging provided an innovative method to track the vaccine delivery process simultaneously.
机译:疫苗递送过程对抗原特异性免疫反应发挥着重要作用,直接决定了免疫疗法的影响。揭示疫苗释放的实时过程和体内植入载体的状态至关重要。在此,用罗丹明 - 卵巢载负载的锌酞菁缀合的纳米颗粒(PHA-OVA NPS)监测双荧光疫苗输送系统,以探讨疫苗递送过程。 PHA-OVA NPS在体外持续释放卵泡,可以显着增强树突细胞(DC)的抗原的摄取。 PHA-OVA NPS还可以上调DCS表面上的共刺激分子水平,表明抗原输送系统的增强能力促进抗原特殊T细胞的抗原呈递与可溶性抗原相比。使用多光谱荧光成像系统在体内同时跟踪卵烧蛋白和PHA NP的序列,结果表明,通过输送载体将抗原携带到淋巴器官。多光谱荧光成像提供了一种创新方法,可以同时跟踪疫苗递送过程。

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