a Peter Gorer Department of Immunobiology , King's College London , London , UK.
Expert Opin Drug Deliv. 2017 Oct;14(10):1177-1187. doi: 10.1080/17425247.2017.1230096. Epub 2016 Sep 7.
Microneedle array platforms are a promising technology for vaccine delivery, due to their ease of administration with no sharp waste generated, small size, possibility of targeted delivery to the specified skin depth and efficacious delivery of different vaccine formulations, including viral vectors. Areas covered: Attributes and challenges of the most promising viral vector candidates that have advanced to the clinic and that have been leveraged for skin delivery by microneedles; The importance of understanding the immunobiology of antigen-presenting cells in the skin, in particular dendritic cells, in order to generate further improved skin vaccination strategies; recent studies where viral vectors expressing various antigens have been coupled with microneedle technology to examine their potential for improved vaccination. Expert opinion: Simple, economic and efficacious vaccine delivery methods are needed to improve health outcomes and manage possible outbreaks of new emerging viruses. Understanding what innate/inflammatory signals are required to induce both immediate and long-term responses remains a major hurdle in the development of the effective vaccines. One approach to meet these needs is microneedle-mediated viral vector vaccination. In order for this technology to fulfil this potential the industry must invest significantly to further develop its design, production, biosafety, delivery and large-scale manufacturing.
微针阵列平台是一种有前途的疫苗传递技术,由于其易于管理,不会产生尖锐的废物,体积小,有可能将疫苗制剂靶向递送至特定的皮肤深度,并有效地传递不同的疫苗制剂,包括病毒载体。涵盖领域:已进入临床并通过微针用于皮肤传递的最有前途的病毒载体候选物的特性和挑战;了解皮肤中抗原呈递细胞(特别是树突状细胞)的免疫生物学的重要性,以生成进一步改进的皮肤接种策略;最近的研究中,表达各种抗原的病毒载体与微针技术相结合,以研究其在改进疫苗接种方面的潜力。专家意见:需要简单、经济和有效的疫苗接种方法来改善健康结果并应对新出现的病毒可能爆发。了解诱导即刻和长期反应所需的先天/炎症信号仍然是开发有效疫苗的主要障碍。满足这些需求的一种方法是微针介导的病毒载体疫苗接种。为了使这项技术发挥其潜力,工业界必须进行大量投资,进一步开发其设计、生产、生物安全、传递和大规模制造。