Ng Hwee-Ing, Tuong Zewen K, Fernando Germain J P, Depelsenaire Alexandra C I, Meliga Stefano C, Frazer Ian H, Kendall Mark A F
1Delivery of Drugs and Genes Group (D2G2), Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, QLD 4072 Australia.
3Present Address: Vaxxas Pty Ltd, Translational Research Institute, 37 Kent Street, Woolloongabba, QLD 4102 Australia.
NPJ Vaccines. 2019 Oct 11;4:41. doi: 10.1038/s41541-019-0134-4. eCollection 2019.
Chemical adjuvants are typically used to improve immune responses induced by immunisation with protein antigens. Here we demonstrate an approach to enhance immune responses that does not require chemical adjuvants. We applied microprojection arrays to the skin, producing a range of controlled mechanical energy to invoke localised inflammation, while administering influenza split virus protein antigen. We used validated computational modelling methods to identify links between mechanical stress and energy generated within the skin strata and resultant cell death. We compared induced immune responses to those induced by needle-based intradermal antigen delivery and used a systems biology approach to examine the nature of the induced inflammatory response, and correlated this with markers of cell stress and death. Increasing the microprojection array application energy and the addition of QS-21 adjuvant were each associated with enhanced antibody response to delivered antigen and with induction of gene transcriptions associated with TNF and NF-κB signalling pathways. We concluded that microprojection intradermal antigen delivery inducing controlled local cell death could potentially replace chemical adjuvants to enhance the immune response to protein antigen.
化学佐剂通常用于增强蛋白质抗原免疫接种所诱导的免疫反应。在此,我们展示了一种无需化学佐剂即可增强免疫反应的方法。我们将微针阵列应用于皮肤,产生一系列可控的机械能以引发局部炎症,同时给予流感裂解病毒蛋白抗原。我们使用经过验证的计算建模方法来确定机械应力与皮肤各层内产生的能量以及由此导致的细胞死亡之间的联系。我们将诱导的免疫反应与基于针头的皮内抗原递送所诱导的免疫反应进行了比较,并采用系统生物学方法研究诱导的炎症反应的性质,并将其与细胞应激和死亡标志物相关联。增加微针阵列施加的能量以及添加QS-21佐剂均与对递送抗原的抗体反应增强以及与TNF和NF-κB信号通路相关的基因转录诱导有关。我们得出结论,微针皮内抗原递送诱导可控的局部细胞死亡可能潜在地替代化学佐剂以增强对蛋白质抗原的免疫反应。