Protective humoral immunity induced by virus-like particles expressing Toxoplasma gondii CST1 or MIC8.

IF 2.1 3区 医学 Q2 PARASITOLOGY Acta tropica Pub Date : 2024-12-16 DOI:10.1016/j.actatropica.2024.107501
Jie Mao, Gi-Deok Eom, Keon-Woong Yoon, Su In Heo, Hae-Ji Kang, Ki Back Chu, Eun-Kyung Moon, Fu-Shi Quan
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Abstract

Protective efficacy assessment of toxoplasmosis vaccines, at least at the preclinical level, frequently involves lethal dose challenge infection. Nonetheless, their efficacies remain largely unexplored against low infection doses which better reflects how humans become infected in the real world. In this study, we compared the immunity elicited in mice that were heterologously immunized with recombinant baculovirus and virus-like particles expressing either the cyst wall protein (CST1) or microneme protein 8 (MIC8) of Toxoplasma gondii (T. gondii). We also investigated how these vaccines fared against both light and heavy infection intensities of T. gondii ME49. Interestingly, under light infection intensity, vaccines expressing CST1 induced significantly higher mucosal antibody responses than MIC8. Germinal center B (GC B) cell responses were elicited to a greater extent following immunization with either antigen, regardless of the infection dose. Similarly, both antigens suppressed IFN-γ production in the brains upon heavy infection. The overall vaccine-induced protection was also similar for the two vaccine antigens under heavy infection. However, in lightly infected mice, CST1 conferred improved GC B cell induction and further inhibited IFN-γ and cyst burden than those elicited by MIC8, thereby contributing to better protection. These findings indicated that light infection could be used to identify optimal vaccine candidates, thus highlighting the impact of infection intensity in vaccine efficacy evaluations.

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表达弓形虫CST1或MIC8的病毒样颗粒诱导的保护性体液免疫。
弓形虫病疫苗的保护功效评估,至少在临床前水平,经常涉及致死剂量挑战感染。尽管如此,它们的功效在很大程度上仍未被探索,以对抗低感染剂量,这更好地反映了人类在现实世界中是如何被感染的。在本研究中,我们比较了重组杆状病毒和表达刚地弓形虫囊壁蛋白(CST1)或微粒蛋白8 (MIC8)的病毒样颗粒异种免疫小鼠的免疫效果。我们还研究了这些疫苗如何抵抗轻度和重度感染强度的弓形虫ME49。有趣的是,在低感染强度下,表达CST1的疫苗诱导的粘膜抗体反应明显高于MIC8。生发中心B (GC B)细胞反应在免疫任一抗原后更大程度上被激发,无论感染剂量如何。同样,在严重感染时,两种抗原都抑制大脑中IFN-γ的产生。在严重感染情况下,两种疫苗抗原的总体疫苗诱导保护作用也相似。然而,在轻度感染小鼠中,与MIC8诱导的相比,CST1改善了GC B细胞的诱导,并进一步抑制IFN-γ和囊肿负荷,从而提供更好的保护。这些发现表明,光感染可用于确定最佳候选疫苗,从而突出感染强度对疫苗疗效评价的影响。
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来源期刊
Acta tropica
Acta tropica 医学-寄生虫学
CiteScore
5.40
自引率
11.10%
发文量
383
审稿时长
37 days
期刊介绍: Acta Tropica, is an international journal on infectious diseases that covers public health sciences and biomedical research with particular emphasis on topics relevant to human and animal health in the tropics and the subtropics.
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