Ciabattini Annalisa, Parigi Riccardo, Isticato Rachele, Oggioni Marco R, Pozzi Gianni
Laboratorio di Microbiologia Molecolare e Biotecnologia (LAMMB), Dipartimento di Biologia Molecolare, Università di Siena, Policlinico Le Scotte V lotto, piano 1, 53100 Siena, Italy.
Vaccine. 2004 Oct 22;22(31-32):4139-43. doi: 10.1016/j.vaccine.2004.05.001.
Recombinant Bacillus subtilis spores were employed as a vaccine delivery system in a heterologous mucosal priming-parenteral boosting vaccination strategy in the mouse model. BALB/c and C57BL/6 mice were orally immunised with recombinant spores expressing tetanus toxin fragment C (TTFC) fused to the spore outer coat protein CotB, and then subcutaneously boosted with soluble TTFC (without adjuvant). Two weeks after boosting, a significantly higher serum TTFC-specific IgG response was stimulated in mice primed with recombinant spores (antibody concentration of 2600 +/- 915 in C57BL/6 and 1200 +/- 370 ng/ml in BALB/c) compared to mice inoculated with wild type spores (650 +/- 250 and 250 +/- 130 ng/ml, respectively). IgG subclass analysis showed a prevalence of IgG1 and IgG2b, indicative of a Th2 type of immune response. Oral administration of recombinant spores stimulated also a significant local TTFC-specific IgA response. These data show that recombinant spores of B. subtilis are able to prime the immune system by the oral route, and that a combined mucosal/parenteral strategy can stimulate both local and systemic antigen-specific immune responses.
在小鼠模型的异源黏膜初免-肠外加强免疫接种策略中,重组枯草芽孢杆菌孢子被用作疫苗递送系统。用表达与孢子外膜蛋白CotB融合的破伤风毒素片段C(TTFC)的重组孢子对BALB/c和C57BL/6小鼠进行口服免疫,然后用可溶性TTFC(无佐剂)进行皮下加强免疫。加强免疫两周后,与接种野生型孢子的小鼠(分别为650±250和250±130 ng/ml)相比,用重组孢子初免的小鼠刺激产生了显著更高的血清TTFC特异性IgG反应(C57BL/6中抗体浓度为2600±915,BALB/c中为1200±370 ng/ml)。IgG亚类分析显示IgG1和IgG2b占优势,表明是Th2型免疫反应。口服重组孢子也刺激产生了显著的局部TTFC特异性IgA反应。这些数据表明,枯草芽孢杆菌的重组孢子能够通过口服途径启动免疫系统,并且联合黏膜/肠外策略可以刺激局部和全身抗原特异性免疫反应。