Nakagami Hironori, Morishita Ryuichi
Osaka University, Osaka University United Graduate School of Child Development, Kanazawa University and Hamamatsu University School of Medicine, Division of Vascular Medicine and Epigenetics , 2-1 Yamada-oka, Suita, Osaka 565-0871 , Japan +81 6 6879 4142 ; +81 6 6879 4142 ;
Expert Opin Biol Ther. 2015 Mar;15(3):431-6. doi: 10.1517/14712598.2015.1014791. Epub 2015 Feb 11.
Vaccines are used as preventive medicine for infectious diseases worldwide; however, several recent studies have indicated the potential of therapeutic vaccines for managing Alzheimer's disease or hypertension.
The concept and history of therapeutic vaccines for hypertension are introduced. The improvement of drug compliance associated with vaccines in hypertensive patients may assist in better control of blood pressure, leading to reduced complications. Recently, groups have attempted to develop a therapeutic vaccine against hypertension. The vaccine-induced anti-angiotensin II antibodies can efficiently ameliorate high blood pressure. DNA vaccines have also been designed via a similar strategy using a plasmid vector encoding a hepatitis B core (HBc)-angiotensin II fusion protein. The immunogenic molecule (i.e., HBc) is used to provide an antigen that supports the activation of T cells in this DNA vaccine system. The platform technology can also be applied to generate a VEGF vaccine for cancer.
To date, several clinical studies of DNA vaccines have been conducted, but their effectiveness has not been determined. We hope that the novel concept of DNA vaccines will contribute to promoting health and medicine in the future.
疫苗在全球范围内被用作传染病的预防药物;然而,最近的几项研究表明治疗性疫苗在治疗阿尔茨海默病或高血压方面具有潜力。
介绍了高血压治疗性疫苗的概念和历史。高血压患者中与疫苗相关的药物依从性改善可能有助于更好地控制血压,从而减少并发症。最近,一些团队试图开发一种抗高血压治疗性疫苗。疫苗诱导的抗血管紧张素II抗体可有效改善高血压。DNA疫苗也通过类似策略设计,使用编码乙肝核心(HBc)-血管紧张素II融合蛋白的质粒载体。免疫原性分子(即HBc)用于提供一种抗原,在该DNA疫苗系统中支持T细胞的激活。该平台技术也可应用于生成用于癌症的VEGF疫苗。
迄今为止,已经进行了几项DNA疫苗的临床研究,但它们的有效性尚未确定。我们希望DNA疫苗的新概念将有助于在未来促进健康和医学发展。