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首页> 外文期刊>ACS nano >Synthetic Charge-Invertible Polymer for Rapid and Complete Implantation of Layer-by-Layer Microneedle Drug Films for Enhanced Transdermal Vaccination
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Synthetic Charge-Invertible Polymer for Rapid and Complete Implantation of Layer-by-Layer Microneedle Drug Films for Enhanced Transdermal Vaccination

机译:合成电荷可逆聚合物,用于快速和完全植入层逐层微针药物膜,用于增强透皮疫苗接种

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摘要

The utility of layer-by-layer (LbL) coated microneedle (MN) skin patches for transdermal drug delivery has proven to be a promising approach, with advantages over hypodermal injection due to painless and easy self-administration. However, the long epidermal application time required for drug implantation by existing LbL MN strategies (15-90 min) can lead to potential medication noncompliance. Here, we developed a MN platform to shorten the application time in MN therapies based on a synthetic pH-induced charge-invertible polymer poly(2-(diisopropylamino) ethyl methacrylate-b-methacrylic acid) (PDM), requiring only 1 min skin insertion time to implant LbL films in vivo. Following MN-mediated delivery of 0.5 mu g model antigen chicken ovalbumin (OVA) in the skin of mice, this system achieved sustained release over 3 days and led to an elevated immune response as demonstrated by significantly higher humoral immunity compared with OVA administration via conventional routes (subcutaneously and intramuscularly). Moreover, in an ex vivo experiment on human skin, we achieved efficient immune activation through MN-delivered LbL films, demonstrated by a rapid uptake of vaccine adjuvants by the antigen presenting cells. These features, rapid administration and the ability to elicit a robust immune response, can potentially enable a broad application of microneedle-based vaccination technologies.
机译:逐层(LBL)涂覆的微针(Mn)皮肤贴片的透皮药物递送的效用已被证明是一种有希望的方法,具有由于无痛和易于自我管理而对皮下注射注射的优势。然而,现有LBL MN策略(15-90分钟)可以导致潜在的药物植入所需的长表皮施用时间。在这里,我们开发了一种Mn平台,以缩短基于合成的pH诱导的电荷可逆聚合物聚(2-(二异丙基氨基)甲基丙烯酸乙酯-B-甲基丙烯酸)(PDM)的Mn疗法中的施用时间,只需要1分钟的皮肤插入时间以在体内植入LBL薄膜。在MN介导的0.5μg型抗原鸡卵蛋白(OVA)在小鼠的皮肤中进行,该系统在3天内实现了持续释放,并导致免疫应答升高,与通过常规的OVA给药相比显着更高的体液免疫。途径(皮下和肌肉内)。此外,在对人体皮肤的前体内实验中,我们通过Mn递送的LBL薄膜实现了高效的免疫激活,通过抗原呈递细胞的快速摄取疫苗佐剂的快速吸收。这些特征,快速管理和引发鲁棒免疫应答的能力,可以广泛应用微针的疫苗接种技术。

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