GenVec, Inc., 65 West Watkins Mill Road, Gaithersburg, MD 20878, USA.
Vaccine. 2010 Apr 19;28(18):3201-10. doi: 10.1016/j.vaccine.2010.02.024. Epub 2010 Feb 25.
An effective malaria vaccine remains a global health priority. Recombinant adenoviruses are a promising vaccine platform, and Plasmodium falciparum apical membrane antigen 1 (AMA1) and merozoite surface protein 1-42 (MSP1(42)) are leading blood stage vaccine candidates. We evaluated the importance of surface antigen localization and glycosylation on the immunogenicity of adenovector delivered AMA1 and MSP1(42) and assessed the ability of these vaccines to induce functional antibody responses capable of inhibiting parasite growth in vitro. Adenovector delivery induced unprecedented levels of biologically active antibodies in rabbits as indicated by the parasite growth inhibition assay. These responses were as potent as published results using any other vaccine system, including recombinant protein in adjuvant. The cell surface associated and glycosylated forms of AMA1 and MSP1(42) elicited 99% and 60% inhibition of parasite growth, respectively. Antigens that were expressed at the cell surface and glycosylated were much better than intracellular antigens at inducing antibody responses. Good T cell responses were observed for all forms of AMA1 and MSP1(42). Antigen-specific antibody responses, but typically not T cell responses, were boosted by a second administration of adenovector. These data highlight the importance of rational vaccine design and support the advancement of adenovector delivery technology for a malaria vaccine.
一种有效的疟疾疫苗仍然是全球卫生的重点。重组腺病毒是一种很有前途的疫苗平台,恶性疟原虫顶膜抗原 1(AMA1)和裂殖体表面蛋白 1-42(MSP1(42))是主要的血阶段疫苗候选物。我们评估了表面抗原定位和糖基化对腺病毒载体传递的 AMA1 和 MSP1(42)免疫原性的重要性,并评估了这些疫苗诱导能够抑制体外寄生虫生长的功能性抗体反应的能力。腺病毒载体的传递如寄生虫生长抑制试验所表明的那样,在兔子中诱导了前所未有的具有生物活性的抗体水平。这些反应与使用任何其他疫苗系统(包括佐剂中的重组蛋白)发表的结果一样有效。AMA1 和 MSP1(42)的细胞表面相关和糖基化形式分别引起寄生虫生长 99%和 60%的抑制。与细胞内抗原相比,在细胞表面表达和糖基化的抗原在诱导抗体反应方面要好得多。观察到所有形式的 AMA1 和 MSP1(42)都有良好的 T 细胞反应。腺病毒载体的第二次给药可增强抗原特异性抗体反应,但通常不能增强 T 细胞反应。这些数据强调了合理疫苗设计的重要性,并支持腺病毒载体传递技术在疟疾疫苗中的应用。