电穿孔
dna疫苗
免疫系统
透皮
免疫疗法
癌症免疫疗法
医学
转染
抗原
细胞毒性T细胞
癌症疫苗
卵清蛋白
体内
癌症研究
药理学
免疫学
生物
遗传学
免疫
细胞培养
体外
基因
生物化学
生物技术
作者
Yuan Wang,Qu Jin,Chaomei Xiong,Bing Chen,Xie Kai,Mingxue Wang,Zhen Liu,Yue Zhao,Zhenghua Liang,Feng Wang,Tianlong Zhang,Guangyu Zhu,Yi Kuang,Peng Shi
标识
DOI:10.1073/pnas.2322264121
摘要
Despite the tremendous clinical potential of nucleic acid–based vaccines, their efficacy to induce therapeutic immune response has been limited by the lack of efficient local gene delivery techniques in the human body. In this study, we develop a hydrogel-based organic electronic device (μEPO) for both transdermal delivery of nucleic acids and in vivo microarrayed cell electroporation, which is specifically oriented toward one-step transfection of DNAs in subcutaneous antigen-presenting cells (APCs) for cancer immunotherapy. The μEPO device contains an array of microneedle-shaped electrodes with pre-encapsulated dry DNAs. Upon a pressurized contact with skin tissue, the electrodes are rehydrated, electrically triggered to release DNAs, and then electroporate nearby cells, which can achieve in vivo transfection of more than 50% of the cells in the epidermal and upper dermal layer. As a proof-of-concept, the μEPO technique is employed to facilitate transdermal delivery of neoantigen genes to activate antigen-specific immune response for enhanced cancer immunotherapy based on a DNA vaccination strategy. In an ovalbumin (OVA) cancer vaccine model, we show that high-efficiency transdermal transfection of APCs with OVA-DNAs induces robust cellular and humoral immune responses, including antigen presentation and generation of IFN-γ + cytotoxic T lymphocytes with a more than 10-fold dose sparing over existing intramuscular injection (IM) approach, and effectively inhibits tumor growth in rodent animals.
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