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全细胞百日咳疫苗制备过程中培养条件的调节会影响疫苗介导的人TLR4激活。

Vaccine-Mediated Activation of Human TLR4 Is Affected by Modulation of Culture Conditions during Whole-Cell Pertussis Vaccine Preparation.

作者信息

Hoonakker Marieke E, Verhagen Lisa M, Pupo Elder, de Haan Alex, Metz Bernard, Hendriksen Coenraad F M, Han Wanda G H, Sloots Arjen

机构信息

Institute for Translational Vaccinology (Intravacc), Bilthoven, The Netherlands.

Department of Animals in Science and Society, Faculty of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands.

出版信息

PLoS One. 2016 Aug 22;11(8):e0161428. doi: 10.1371/journal.pone.0161428. eCollection 2016.

Abstract

The potency of whole-cell pertussis (wP) vaccines is still determined by an intracerebral mouse protection test. To allow development of suitable in vitro alternatives to this test, insight into relevant parameters to monitor the consistency of vaccine quality is essential. To this end, a panel of experimental wP vaccines of varying quality was prepared by sulfate-mediated suppression of the BvgASR master virulence regulatory system of Bordetella pertussis during cultivation. This system regulates the transcription of a range of virulence proteins, many of which are considered important for the induction of effective host immunity. The protein compositions and in vivo potencies of the vaccines were BvgASR dependent, with the vaccine containing the highest amount of virulence proteins having the highest in vivo potency. Here, the capacities of these vaccines to stimulate human Toll-like receptors (hTLR) 2 and 4 and the role these receptors play in wP vaccine-mediated activation of antigen-presenting cells in vitro were studied. Prolonged BvgASR suppression was associated with a decreased capacity of vaccines to activate hTLR4. In contrast, no significant differences in hTLR2 activation were observed. Similarly, vaccine-induced activation of MonoMac-6 and monocyte-derived dendritic cells was strongest with the highest potency vaccine. Blocking of TLR2 and TLR4 showed that differences in antigen-presenting cell activation could be largely attributed to vaccine-dependent variation in hTLR4 signalling. Interestingly, this BvgASR-dependent decrease in hTLR4 activation coincided with a reduction in GlcN-modified lipopolysaccharides in these vaccines. Accordingly, expression of the lgmA-C genes, required for this glucosamine modification, was significantly reduced in bacteria exposed to sulfate. Together, these findings demonstrate that the BvgASR status of bacteria during wP vaccine preparation is critical for their hTLR4 activation capacity and suggest that including such parameters to assess consistency of newly produced vaccines could bring in vitro testing of vaccine quality a step closer.

摘要

全细胞百日咳(wP)疫苗的效力仍通过脑内小鼠保护试验来确定。为了开发适用于该试验的体外替代方法,深入了解监测疫苗质量一致性的相关参数至关重要。为此,通过在培养过程中用硫酸盐介导抑制百日咳博德特氏菌的BvgASR主毒力调节系统,制备了一组质量不同的实验性wP疫苗。该系统调节一系列毒力蛋白的转录,其中许多毒力蛋白被认为对诱导有效的宿主免疫很重要。疫苗的蛋白质组成和体内效力依赖于BvgASR,含有最高量毒力蛋白的疫苗具有最高的体内效力。在此,研究了这些疫苗刺激人 Toll 样受体(hTLR)2 和 4 的能力以及这些受体在体外 wP 疫苗介导的抗原呈递细胞激活中所起的作用。BvgASR 抑制时间延长与疫苗激活 hTLR4 的能力下降有关。相比之下,未观察到 hTLR2 激活的显著差异。同样,效力最高的疫苗对MonoMac-6和单核细胞衍生树突状细胞的疫苗诱导激活最强。阻断 TLR2 和 TLR4 表明,抗原呈递细胞激活的差异很大程度上可归因于 hTLR4 信号传导中疫苗依赖性的变化。有趣的是,这种BvgASR依赖性的hTLR4激活减少与这些疫苗中GlcN修饰的脂多糖减少相吻合。因此,在暴露于硫酸盐的细菌中,这种葡糖胺修饰所需的lgmA-C基因的表达显著降低。总之,这些发现表明,wP疫苗制备过程中细菌的BvgASR状态对其hTLR4激活能力至关重要,并表明纳入此类参数以评估新生产疫苗的一致性可能会使疫苗质量的体外检测更进一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded7/4993483/60e78f721753/pone.0161428.g001.jpg

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