Jiang Shisong, Rasmussen Robert A, Nolan Katrina M, Frankel Fred R, Lieberman Judy, McClure Harold M, Williams Kristina M, Babu Uma S, Raybourne Richard B, Strobert Elizabeth, Ruprecht Ruth M
Department of Cancer Immunology and AIDS, Dana-Farber Cancer Institute, Boston, MA 02115, USA.
Vaccine. 2007 Oct 16;25(42):7470-9. doi: 10.1016/j.vaccine.2007.08.013. Epub 2007 Aug 27.
Induction of strong cellular immunity will be important for AIDS vaccine candidates. Natural infection with wild-type Listeria monocytogenes (Lm), an orally transmitted organism, is known to generate strong cellular immunity, thus raising the possibility that live attenuated Lm could serve as a vaccine vector. We sought to examine the potential of live attenuated Lm to induce cellular immune responses to HIV Gag. Rhesus macaques were immunized with Lmdd-gag that expresses HIV gag and lacks two genes in the D-alanine (D-ala) synthesis pathway. Without this key component of the bacterial cell wall, vaccine vector replication critically depends on exogenous D-ala. Lmdd-gag was given to animals either solely orally or by oral priming followed by intramuscular (i.m.) boosting; D-ala was co-administered with all vaccinations. Lmdd-gag and D-ala were well tolerated. Oral priming/oral boosting induced Gag-specific cellular immune responses, whereas oral priming/i.m. boosting induced systemic as well as mucosal anti-Gag antibodies. These results suggest that the route of vaccination may bias anti-Gag immune responses either towards T-helper type 1 (Th1) or Th2 responses; overall, our data show that live attenuated, recombinant Lmdd-gag is safe and immunogenic in primates.
诱导强大的细胞免疫对艾滋病候选疫苗很重要。天然感染野生型单核细胞增生李斯特菌(Lm),一种经口传播的微生物,已知会产生强大的细胞免疫,因此增加了减毒活Lm可作为疫苗载体的可能性。我们试图研究减毒活Lm诱导针对HIV Gag的细胞免疫反应的潜力。恒河猴用表达HIV gag且在D-丙氨酸(D-ala)合成途径中缺少两个基因的Lmdd-gag进行免疫。没有细菌细胞壁的这个关键成分,疫苗载体的复制严重依赖于外源性D-ala。Lmdd-gag单独经口给予动物,或经口初免后再进行肌肉注射(i.m.)加强免疫;D-ala与所有疫苗接种同时给予。Lmdd-gag和D-ala耐受性良好。经口初免/经口加强免疫诱导了Gag特异性细胞免疫反应,而经口初免/肌肉注射加强免疫诱导了全身性以及黏膜抗Gag抗体。这些结果表明,疫苗接种途径可能使抗Gag免疫反应偏向于1型辅助性T细胞(Th1)或Th2反应;总体而言,我们的数据表明,减毒活重组Lmdd-gag在灵长类动物中是安全且具有免疫原性的。