Liao Jing-Fong, Lee Jin-Ching, Lin Chun-Kuang, Wei Kuo-Chen, Chen Pin-Yuan, Yang Hung-Wei
Institute of Medical Science and Technology, National Sun Yat-sen University, Kaohsiung 80424, Taiwan.
Department of Biotechnology, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.
Theranostics. 2017 Jun 25;7(10):2593-2605. doi: 10.7150/thno.19894. eCollection 2017.
The strong immunogenicity induction is the powerful weapon to prevent the virus infections. This study demonstrated that one-step synthesis of DNA polyplex vaccine in microneedle (MN) patches can induce high immunogenicity through intradermal vaccination and increase the vaccine stability for storage outside the cold chain. More negative charged DNA vaccine was entrapped into the needle region of MNs followed by DNA polyplex formation with branched polyethylenimine (bPEI) pre-coated in the cavities of polydimethylsiloxane (PDMS) molds that can deliver more DNA vaccine to immune-cell rich epidermis with high transfection efficiency. Our data in this study support the safety and immunogenicity of the MN-based vaccine; the MN patch delivery system induced an immune response 3.5-fold as strong as seen with conventional intramuscular administration; the DNA polyplex formulation provided excellent vaccine stability at high temperature (could be stored at 45ºC for at least 4 months); the DNA vaccine is expected to be manufactured at low cost and not generate sharps waste. We think this study is significant to public health because there is a pressing need for an effective vaccination in developing countries.
强大的免疫原性诱导是预防病毒感染的有力武器。本研究表明,在微针(MN)贴片上一步合成DNA多聚体疫苗可通过皮内接种诱导高免疫原性,并提高疫苗在冷链外储存的稳定性。更多带负电荷的DNA疫苗被包裹在微针的针区域,随后与预涂覆在聚二甲基硅氧烷(PDMS)模具腔中的支化聚乙烯亚胺(bPEI)形成DNA多聚体,该模具可将更多DNA疫苗高效递送至富含免疫细胞的表皮。我们在本研究中的数据支持基于微针的疫苗的安全性和免疫原性;微针贴片递送系统诱导的免疫反应强度是传统肌肉注射的3.5倍;DNA多聚体制剂在高温下具有出色的疫苗稳定性(可在45℃储存至少4个月);DNA疫苗有望低成本生产且不会产生锐器废物。我们认为这项研究对公共卫生具有重要意义,因为发展中国家迫切需要有效的疫苗接种。