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首页> 外文期刊>ACS nano >Releasable layer-by-layer assembly of stabilized lipid nanocapsules on microneedles for enhanced transcutaneous vaccine delivery
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Releasable layer-by-layer assembly of stabilized lipid nanocapsules on microneedles for enhanced transcutaneous vaccine delivery

机译:稳定的脂质纳米胶囊在微针上的可释放的逐层组装,以增强经皮疫苗的递送

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Here we introduce a new approach for transcutaneous drug delivery, using microneedles coated with stabilized lipid nanocapsules, for delivery of a model vaccine formulation. Poly(lactide-co-glycolide) microneedle arrays were coated with multilayer films via layer-by-layer assembly of a biodegradable cationic poly(β-amino ester) (PBAE) and negatively charged interbilayer-cross-linked multilamellar lipid vesicles (ICMVs). To test the potential of these nanocapsule-coated microneedles for vaccine delivery, we loaded ICMVs with a protein antigen and the molecular adjuvant monophosphoryl lipid A. Following application of microneedle arrays to the skin of mice for 5 min, (PBAE/ICMV) films were rapidly transferred from microneedle surfaces into the cutaneous tissue and remained in the skin following removal of the microneedle arrays. Multilayer films implanted in the skin dispersed ICMV cargos in the treated tissue over the course of 24 h in vivo, allowing for uptake of the lipid nanocapsules by antigen presenting cells in the local tissue and triggering their activation in situ. Microneedle-mediated transcutaneous vaccination with ICMV-carrying multilayers promoted robust antigen-specific humoral immune responses with a balanced generation of multiple IgG isotypes, whereas bolus delivery of soluble or vesicle-loaded antigen via intradermal injection or transcutaneous vaccination with microneedles encapsulating soluble protein elicited weak, IgG _1-biased humoral immune responses. These results highlight the potential of lipid nanocapsules delivered by microneedles as a promising platform for noninvasive vaccine delivery applications.
机译:在这里,我们介绍了一种新的经皮药物递送方法,该方法使用包覆有稳定脂质纳米胶囊的微针递送模型疫苗制剂。聚(丙交酯-共-乙交酯)微针阵列通过可生物降解的阳离子聚(β-氨基酯)(PBAE)和带负电荷的双分子层间交联的多层脂质囊泡(ICMV)的逐层组装涂覆多层膜。为了测试这些纳米囊包被的微针用于疫苗递送的潜力,我们用蛋白抗原和分子佐剂单磷酸脂A装载了ICMV。将微针阵列应用于小鼠皮肤5分钟后,将(PBAE / ICMV)膜迅速从微针表面转移到皮肤组织中,并在去除微针阵列后保留在皮肤中。植入皮肤的多层膜在体内经过24小时的过程中将ICMV货物分散在治疗的组织中,从而允许局部组织中的抗原呈递细胞摄取脂质纳米胶囊并触发其原位活化。携带ICMV的多层微针介导的经皮疫苗接种可促进强大的抗原特异性体液免疫反应,并平衡生成多种IgG同种型,而通过皮内注射或包裹有可溶性蛋白的微针经皮疫苗推注可溶或囊泡加载的抗原可产生弱反应,IgG _1偏向体液免疫反应。这些结果突出了微针递送脂质纳米胶囊作为无创疫苗递送应用的有希望的平台的潜力。

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