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全球基因组病原体监测以提供疫苗策略信息:长达十年的肺炎球菌基因组学探索。

Global genomic pathogen surveillance to inform vaccine strategies: a decade-long expedition in pneumococcal genomics.

机构信息

Parasites and Microbes, Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, UK.

出版信息

Genome Med. 2021 May 17;13(1):84. doi: 10.1186/s13073-021-00901-2.

Abstract

Vaccines are powerful agents in infectious disease prevention but often designed to protect against some strains that are most likely to spread and cause diseases. Most vaccines do not succeed in eradicating the pathogen and thus allow the potential emergence of vaccine evading strains. As with most evolutionary processes, being able to capture all variations across the entire genome gives us the best chance of monitoring and understanding the processes of vaccine evasion. Genomics is being widely adopted as the optimum approach for pathogen surveillance with the potential for early and precise identification of high-risk strains. Given sufficient longitudinal data, genomics also has the potential to forecast the emergence of such strains enabling immediate or pre-emptive intervention. In this review, we consider the strengths and challenges for pathogen genomic surveillance using the experience of the Global Pneumococcal Sequencing (GPS) project as an early example. We highlight the multifaceted nature of genome data and recent advances in genome-based tools to extract useful information relevant to inform vaccine strategies and treatment options. We conclude with future perspectives for genomic pathogen surveillance.

摘要

疫苗是预防传染病的有力手段,但通常是为了预防最有可能传播和引起疾病的某些菌株而设计的。大多数疫苗并不能成功根除病原体,从而允许潜在的逃避疫苗的菌株出现。与大多数进化过程一样,能够捕捉整个基因组中的所有变异,使我们有最好的机会监测和了解逃避疫苗的过程。基因组学作为病原体监测的最佳方法得到了广泛的应用,具有早期和精确识别高危菌株的潜力。如果有足够的纵向数据,基因组学也有可能预测此类菌株的出现,从而能够立即或先发制人地进行干预。在这篇综述中,我们考虑了使用全球肺炎球菌测序 (GPS) 项目的早期经验进行病原体基因组监测的优势和挑战。我们强调了基因组数据的多方面性质以及基于基因组的工具的最新进展,这些工具可以提取与疫苗策略和治疗方案相关的有用信息。最后,我们对基因组病原体监测的未来展望进行了总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7b5/8130287/a1a683ec6f9c/13073_2021_901_Fig1_HTML.jpg

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