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确定抗体预防马传染性贫血病毒感染的条件。

Identifying the Conditions Under Which Antibodies Protect Against Infection by Equine Infectious Anemia Virus.

作者信息

Schwartz Elissa J, Smith Robert J

机构信息

School of Biological Sciences and Department of Mathematics, Washington State University, Pullman, WA 99164, USA.

Department of Mathematics and Faculty of Medicine, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Vaccines (Basel). 2014 May 27;2(2):397-421. doi: 10.3390/vaccines2020397.

Abstract

The ability to predict the conditions under which antibodies protect against viral infection would transform our approach to vaccine development. A more complete understanding is needed of antibody protection against lentivirus infection, as well as the role of mutation in resistance to an antibody vaccine. Recently, an example of antibody-mediated vaccine protection has been shown via passive transfer of neutralizing antibodies before equine infectious anemia virus (EIAV) infection of horses with severe combined immunodeficiency (SCID). Viral dynamic modeling of antibody protection from EIAV infection in SCID horses may lead to insights into the mechanisms of control of infection by antibody vaccination. In this work, such a model is constructed in conjunction with data from EIAV infection of SCID horses to gain insights into multiple strain competition in the presence of antibody control. Conditions are determined under which wild-type infection is eradicated with the antibody vaccine. In addition, a three-strain competition model is considered in which a second mutant strain may coexist with the first mutant strain. The conditions that permit viral escape by the mutant strains are determined, as are the effects of variation in the model parameters. This work extends the current understanding of competition and antibody control in lentiviral infection, which may provide insights into the development of vaccines that stimulate the immune system to control infection effectively.

摘要

预测抗体预防病毒感染的条件的能力将改变我们开发疫苗的方法。我们需要更全面地了解抗体对慢病毒感染的保护作用,以及突变在抗体疫苗抗性中的作用。最近,通过在严重联合免疫缺陷(SCID)的马感染马传染性贫血病毒(EIAV)之前被动转移中和抗体,展示了抗体介导的疫苗保护的一个例子。对SCID马中抗体预防EIAV感染的病毒动力学建模可能有助于深入了解抗体疫苗控制感染的机制。在这项工作中,结合SCID马EIAV感染的数据构建了这样一个模型,以深入了解在抗体控制下的多毒株竞争。确定了使用抗体疫苗根除野生型感染的条件。此外,还考虑了一个三毒株竞争模型,其中第二个突变株可能与第一个突变株共存。确定了允许突变株发生病毒逃逸的条件,以及模型参数变化的影响。这项工作扩展了我们目前对慢病毒感染中竞争和抗体控制的理解,这可能为开发刺激免疫系统有效控制感染的疫苗提供见解。

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