质粒
dna疫苗
生物
DNA
基因
抗原
病毒学
分子生物学
计算生物学
遗传学
作者
Adam A. Walters,Ekaterina Kinnear,Robin J. Shattock,Jacqueline U. McDonald,Lisa J. Caproni,Nancy Porter,John S. Tregoning
出处
期刊:Gene Therapy
[Springer Nature]
日期:2014-05-15
卷期号:21 (7): 645-652
被引量:51
摘要
The use of DNA to deliver vaccine antigens offers many advantages, including ease of manufacture and cost. However, most DNA vaccines are plasmids and must be grown in bacterial culture, necessitating elements that are either unnecessary for effective gene delivery (for example, bacterial origins of replication) or undesirable (for example, antibiotic resistance genes). Removing these elements may improve the safety profile of DNA for the delivery of vaccines. Here, we describe a novel, double-stranded, linear DNA construct produced by an enzymatic process that solely encodes an antigen expression cassette, comprising antigen, promoter, polyA tail and telomeric ends. We compared these constructs (called 'Doggybones' because of their shape) with conventional plasmid DNA. Using luciferase-expressing constructs, we demonstrated that expression levels were equivalent between Doggybones and plasmids both in vitro and in vivo. When mice were immunized with DNA constructs expressing the HIV envelope protein gp140, equivalent humoral and cellular responses were induced. Immunizations with either construct type expressing hemagluttinin were protective against H1N1 influenza challenge. This is the first example of an effective DNA vaccine, which can be produced on a large scale by enzymatic processes.
科研通智能强力驱动
Strongly Powered by AbleSci AI