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建模表明,基因编辑与疫苗接种相结合可能消除家畜中的一种持续性疾病。

Modeling suggests gene editing combined with vaccination could eliminate a persistent disease in livestock.

机构信息

AbacusBio Ltd, Dunedin 9016, New Zealand;

The Roslin Institute, University of Edinburgh, Easter Bush EH25 9RG, Scotland.

出版信息

Proc Natl Acad Sci U S A. 2022 Mar 1;119(9). doi: 10.1073/pnas.2107224119.

Abstract

Recent breakthroughs in gene-editing technologies that can render individual animals fully resistant to infections may offer unprecedented opportunities for controlling future epidemics in farm animals. Yet, their potential for reducing disease spread is poorly understood as the necessary theoretical framework for estimating epidemiological effects arising from gene-editing applications is currently lacking. Here, we develop semistochastic modeling approaches to investigate how the adoption of gene editing may affect infectious disease prevalence in farmed animal populations and the prospects and time scale for disease elimination. We apply our models to the porcine reproductive and respiratory syndrome (PRRS), one of the most persistent global livestock diseases to date. Whereas extensive control efforts have shown limited success, recent production of gene-edited pigs that are fully resistant to the PRRS virus have raised expectations for eliminating this deadly disease. Our models predict that disease elimination on a national scale would be difficult to achieve if gene editing was used as the only disease control. However, from a purely epidemiological perspective, disease elimination may be achievable within 3 to 6 y, if gene editing were complemented with widespread and sufficiently effective vaccination. Besides strategic distribution of genetically resistant animals, several other key determinants underpinning the epidemiological impact of gene editing were identified.

摘要

最近在基因编辑技术方面的突破可以使个体动物完全免受感染,这可能为控制未来农场动物的传染病提供前所未有的机会。然而,由于缺乏用于估计基因编辑应用引起的流行病学影响的必要理论框架,因此对其降低疾病传播的潜力了解甚少。在这里,我们开发了半随机建模方法来研究基因编辑的采用如何影响养殖动物群体中传染病的流行,以及消除疾病的前景和时间尺度。我们将模型应用于猪繁殖与呼吸综合征(PRRS),这是迄今为止最持久的全球牲畜疾病之一。尽管广泛的控制努力收效甚微,但最近生产的完全抵抗 PRRS 病毒的基因编辑猪提高了消除这种致命疾病的期望。我们的模型预测,如果仅使用基因编辑作为唯一的疾病控制方法,那么在全国范围内消除疾病将难以实现。但是,如果将基因编辑与广泛且足够有效的疫苗接种相结合,从纯粹的流行病学角度来看,在 3 到 6 年内可能实现消除疾病。除了具有遗传抗性的动物的战略分布外,还确定了几个其他关键决定因素,这些因素是基因编辑的流行病学影响的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cce/8892294/065e570b23e8/pnas.2107224119fig01.jpg

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