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通过对经鼻接种呼吸道疫苗的犊牛血浆进行代谢组学分析来鉴定全身免疫反应标志物。

Identification of systemic immune response markers through metabolomic profiling of plasma from calves given an intra-nasally delivered respiratory vaccine.

作者信息

Gray Darren W, Welsh Michael D, Doherty Simon, Mansoor Fawad, Chevallier Olivier P, Elliott Christopher T, Mooney Mark H

出版信息

Vet Res. 2015 Feb 14;46:7. doi: 10.1186/s13567-014-0138-z.

Abstract

Vaccination procedures within the cattle industry are important disease control tools to minimize economic and welfare burdens associated with respiratory pathogens. However, new vaccine, antigen and carrier technologies are required to combat emerging viral strains and enhance the efficacy of respiratory vaccines, particularly at the point of pathogen entry. New technologies, specifically metabolomic profiling, could be applied to identify metabolite immune-correlates representative of immune protection following vaccination aiding in the design and screening of vaccine candidates. This study for the first time demonstrates the ability of untargeted UPLC-MS metabolomic profiling to identify metabolite immune correlates characteristic of immune responses following mucosal vaccination in calves. Male Holstein Friesian calves were vaccinated with Pfizer Rispoval® PI3 + RSV intranasal vaccine and metabolomic profiling of post-vaccination plasma revealed 12 metabolites whose peak intensities differed significantly from controls. Plasma levels of glycocholic acid, N-[(3α,5β,12α)-3,12-Dihydroxy-7,24-dioxocholan-24-yl]glycine, uric acid and biliverdin were found to be significantly elevated in vaccinated animals following secondary vaccine administration, whereas hippuric acid significantly decreased. In contrast, significant upregulation of taurodeoxycholic acid and propionylcarnitine levels were confined to primary vaccine administration. Assessment of such metabolite markers may provide greater information on the immune pathways stimulated from vaccine formulations and benchmarking early metabolomic responses to highly immunogenic vaccine formulations could provide a means for rapidly assessing new vaccine formulations. Furthermore, the identification of metabolic systemic immune response markers which relate to specific cell signaling pathways of the immune system could allow for targeted vaccine design to stimulate key pathways which can be assessed at the metabolic level.

摘要

养牛业中的疫苗接种程序是重要的疾病控制工具,可将与呼吸道病原体相关的经济和福利负担降至最低。然而,需要新的疫苗、抗原和载体技术来对抗新出现的病毒株,并提高呼吸道疫苗的效力,特别是在病原体进入点。新技术,特别是代谢组学分析,可用于识别代表疫苗接种后免疫保护的代谢物免疫相关性,有助于疫苗候选物的设计和筛选。本研究首次证明了非靶向超高效液相色谱-质谱代谢组学分析能够识别犊牛黏膜接种后免疫反应特征性的代谢物免疫相关性。雄性荷斯坦弗里生犊牛接种了辉瑞公司的Rispoval® PI3 + RSV鼻内疫苗,接种后血浆的代谢组学分析显示有12种代谢物的峰强度与对照组有显著差异。在二次疫苗接种后,发现接种动物的血浆中甘氨胆酸、N-[(3α,5β,12α)-3,12-二羟基-7,24-二氧代胆烷-24-基]甘氨酸、尿酸和胆绿素水平显著升高,而马尿酸显著降低。相比之下,牛磺去氧胆酸和丙酰肉碱水平的显著上调仅限于初次疫苗接种。对这些代谢物标记物的评估可能会提供更多关于疫苗制剂刺激的免疫途径的信息,对高免疫原性疫苗制剂的早期代谢组学反应进行基准测试可以提供一种快速评估新疫苗制剂的方法。此外,识别与免疫系统特定细胞信号通路相关的代谢性全身免疫反应标记物,可以实现靶向疫苗设计,以刺激可在代谢水平上评估的关键途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32e3/4327799/5eca166d9b48/13567_2014_138_Fig1_HTML.jpg

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