Proteome and immunogenicity differences in BCG Pasteur ATCC 35734 and its derivative, the vaccine candidate BCGΔBCG1419c during planktonic growth in 7H9 and Proskauer Beck media

IF 2.8 3区 医学 Q3 IMMUNOLOGY Tuberculosis Pub Date : 2023-11-28 DOI:10.1016/j.tube.2023.102432
Mario Alberto Flores-Valdez , Jesús Bernardino Velázquez-Fernández , César Pedroza-Roldán , Michel de Jesús Aceves-Sánchez , Abel Gutiérrez-Ortega , Wendy López-Romero , Jeannette Barba-León , Jacobo Rodríguez-Campos
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Abstract

Bacillus Calmette–Guérin (BCG) remains as the only vaccine employed to prevent tuberculosis (TB) during childhood. Among factors likely contributing to the variable efficacy of BCG is the variation in its antigenic repertoire that may arise from in vitro growth conditions. Our vaccine candidate, BCGΔBCG1419c, improved protection against TB in mice and guinea pigs with bacteria grown in either 7H9 OADC Tween 80 and in Proskauer Beck Tween 80 media in independent studies. Here, we compared the proteomes of planktonic cultures of BCG and BCGΔBCG1419c, grown in both media. Further to this, we compared systemic immunogenicity ex vivo elicited by both types of BCG strains and cultures when used to vaccinate BALB/c mice. Both the parental strain BCG Pasteur ATCC 35734, and its isogenic mutant BCGΔBCG1419c, had several medium-dependent changes. Moreover, ex vivo immune responses to a multiantigenic (PPD) or a single antigenic (Ag85A) stimulus were also medium-dependent. Then, not only the presence or absence of the BCG1419c gene in our strains under study affected the proteome produced in vitro but also that this was affected by culture medium, potentially leading to changes in the capacity to induce ex vivo immune responses.

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BCG Pasteur ATCC 35734及其衍生物(候选疫苗BCGΔBCG1419c)在7H9和Proskauer Beck培养基浮游生长过程中的蛋白质组学和免疫原性差异
卡介苗(BCG)仍然是儿童时期预防结核病的唯一疫苗。可能导致卡介苗疗效变化的因素之一是其抗原库的变化,这可能源于体外生长条件。我们的候选疫苗BCGΔBCG1419c在独立研究中,通过在7H9 OADC Tween 80和Proskauer Beck Tween 80培养基中培养的细菌,提高了小鼠和豚鼠对结核病的保护作用。在这里,我们比较了在两种培养基中生长的BCG和BCGΔBCG1419c浮游培养物的蛋白质组。此外,我们比较了两种类型的卡介苗菌株和培养物在体外引起的全身免疫原性,用于接种BALB/c小鼠。亲本菌株BCG Pasteur ATCC 35734及其等基因突变株BCGΔBCG1419c都有几种介质依赖性变化。此外,对多抗原(PPD)或单抗原(Ag85A)刺激的体外免疫反应也是中等依赖的。因此,在我们研究的菌株中,BCG1419c基因的存在与否不仅会影响体外产生的蛋白质组,还会受到培养基的影响,从而可能导致诱导体外免疫反应的能力发生变化。
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来源期刊
Tuberculosis
Tuberculosis 医学-呼吸系统
CiteScore
4.60
自引率
3.10%
发文量
87
审稿时长
49 days
期刊介绍: Tuberculosis is a speciality journal focusing on basic experimental research on tuberculosis, notably on bacteriological, immunological and pathogenesis aspects of the disease. The journal publishes original research and reviews on the host response and immunology of tuberculosis and the molecular biology, genetics and physiology of the organism, however discourages submissions with a meta-analytical focus (for example, articles based on searches of published articles in public electronic databases, especially where there is lack of evidence of the personal involvement of authors in the generation of such material). We do not publish Clinical Case-Studies. Areas on which submissions are welcomed include: -Clinical TrialsDiagnostics- Antimicrobial resistance- Immunology- Leprosy- Microbiology, including microbial physiology- Molecular epidemiology- Non-tuberculous Mycobacteria- Pathogenesis- Pathology- Vaccine development. This Journal does not accept case-reports. The resurgence of interest in tuberculosis has accelerated the pace of relevant research and Tuberculosis has grown with it, as the only journal dedicated to experimental biomedical research in tuberculosis.
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