Ledesma-Feliciano Carmen, Chapman Ros, Hooper Jay W, Elma Kira, Zehrung Darin, Brennan Miles B, Spiegel Erin K
PharmaJet, 400 Corporate Circle, Unit N, Golden, CO 80401, USA.
Institute of Infectious Disease and Molecular Medicine, Faculty of Health Science, University of Cape Town, Cape Town 7925, South Africa.
Vaccines (Basel). 2023 Jan 28;11(2):280. doi: 10.3390/vaccines11020280.
DNA vaccines have inherent advantages compared to other vaccine types, including safety, rapid design and construction, ease and speed to manufacture, and thermostability. However, a major drawback of candidate DNA vaccines delivered by needle and syringe is the poor immunogenicity associated with inefficient cellular uptake of the DNA. This uptake is essential because the target vaccine antigen is produced within cells and then presented to the immune system. Multiple techniques have been employed to boost the immunogenicity and protective efficacy of DNA vaccines, including physical delivery methods, molecular and traditional adjuvants, and genetic sequence enhancements. Needle-free injection systems (NFIS) are an attractive alternative due to the induction of potent immunogenicity, enhanced protective efficacy, and elimination of needles. These advantages led to a milestone achievement in the field with the approval for Restricted Use in Emergency Situation of a DNA vaccine against COVID-19, delivered exclusively with NFIS. In this review, we discuss physical delivery methods for DNA vaccines with an emphasis on commercially available NFIS and their resulting safety, immunogenic effectiveness, and protective efficacy. As is discussed, prophylactic DNA vaccines delivered by NFIS tend to induce non-inferior immunogenicity to electroporation and enhanced responses compared to needle and syringe.
与其他类型的疫苗相比,DNA疫苗具有固有的优势,包括安全性、快速设计与构建、易于生产且生产速度快以及热稳定性。然而,通过针头和注射器递送的候选DNA疫苗的一个主要缺点是免疫原性较差,这与DNA的细胞摄取效率低下有关。这种摄取至关重要,因为目标疫苗抗原是在细胞内产生,然后呈递给免疫系统的。已经采用了多种技术来提高DNA疫苗的免疫原性和保护效力,包括物理递送方法、分子佐剂和传统佐剂以及基因序列增强。无针注射系统(NFIS)因其能诱导强大的免疫原性、增强保护效力以及无需使用针头而成为一种有吸引力的替代方法。这些优势促成了该领域的一个里程碑式成就,即一种专门通过NFIS递送的抗COVID-19 DNA疫苗被批准在紧急情况下限制使用。在本综述中,我们讨论DNA疫苗的物理递送方法,重点是市售的NFIS及其产生的安全性、免疫有效性和保护效力。如所讨论的,通过NFIS递送的预防性DNA疫苗往往能诱导出与电穿孔相当的免疫原性,并且与针头和注射器相比能增强免疫反应。