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首页> 外文期刊>Biomacromolecules >Antigen Delivery by Lipid-Enveloped PLGA Microparticle Vaccines Mediated by in Situ Vesicle Shedding
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Antigen Delivery by Lipid-Enveloped PLGA Microparticle Vaccines Mediated by in Situ Vesicle Shedding

机译:原位囊泡脱落介导的脂质包裹的PLGA微粒疫苗的抗原传递。

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Lipid-coated poly(lactide-co-glycolide) micropar-ticles (LCMPs) consist of a solid polymer core wrapped by a surface lipid bilayer. Previous studies demonstrated that immunization with LCMPs surface-decorated with nanograms of antigen elicit potent humoral immune responses in mice. However, the mechanism of action for these vaccines remained unclear, as LCMPs are too large to drain efficiently to lymph nodes from the vaccination site. Here, we characterized the stability of the lipid envelope of LCMPs and discovered that in the presence of serum the lipid coating of the particles spontaneously delaminates, shedding antigen-displaying vesicles. Lipid delamination generated 180 nm liposomes in a temperature- and lipid/serum-dependent manner. Vesicle shedding was restricted by inclusion of high-T_M lipids or cholesterol in the LCMP coating. Administration of LCMPs bearing stabilized lipid envelopes generated weaker antibody responses than those of shedding-competent LCMPs, suggesting that in situ release of antigen-loaded vesicles plays a key role in the remarkable potency of LCMPs as vaccine adjuvants.
机译:脂质包裹的聚丙交酯-乙交酯共聚物微粒(LCMP)由被表面脂质双层包裹的固体聚合物核组成。先前的研究表明,用纳克抗原表面修饰的LCMP免疫可在小鼠中引起有效的体液免疫反应。但是,这些疫苗的作用机理仍不清楚,因为LCMP太大,无法有效地从疫苗接种部位排入淋巴结。在这里,我们表征了LCMP脂质包膜的稳定性,并发现在存在血清的情况下,颗粒的脂质涂层自发分层,脱落了展示抗原的囊泡。脂质分层以温度和脂质/血清依赖性方式产生180 nm脂质体。 LCMP涂层中包含高T_M脂质或胆固醇,从而限制了囊泡脱落。与具有脱落能力的LCMP相比,施用具有稳定脂质包膜的LCMP产生的抗体反应较弱,这表明原位释放载有抗原的囊泡在LCMP作为疫苗佐剂的显着效力中起关键作用。

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