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泛埃博拉病毒和泛丝状病毒小鼠单克隆抗体:对埃博拉病毒和苏丹病毒的保护作用

Pan-ebolavirus and Pan-filovirus Mouse Monoclonal Antibodies: Protection against Ebola and Sudan Viruses.

作者信息

Holtsberg Frederick W, Shulenin Sergey, Vu Hong, Howell Katie A, Patel Sonal J, Gunn Bronwyn, Karim Marcus, Lai Jonathan R, Frei Julia C, Nyakatura Elisabeth K, Zeitlin Larry, Douglas Robin, Fusco Marnie L, Froude Jeffrey W, Saphire Erica Ollmann, Herbert Andrew S, Wirchnianski Ariel S, Lear-Rooney Calli M, Alter Galit, Dye John M, Glass Pamela J, Warfield Kelly L, Aman M Javad

机构信息

Integrated BioTherapeutics, Inc., Gaithersburg, Maryland, USA.

Ragon Institute of Massachusetts General Hospital, Massachusetts Institute of Technology, and Harvard, Boston, Massachusetts, USA.

出版信息

J Virol. 2015 Oct 14;90(1):266-78. doi: 10.1128/JVI.02171-15. Print 2016 Jan 1.

Abstract

UNLABELLED

The unprecedented 2014-2015 Ebola virus disease (EVD) outbreak in West Africa has highlighted the need for effective therapeutics against filoviruses. Monoclonal antibody (MAb) cocktails have shown great potential as EVD therapeutics; however, the existing protective MAbs are virus species specific. Here we report the development of pan-ebolavirus and pan-filovirus antibodies generated by repeated immunization of mice with filovirus glycoproteins engineered to drive the B cell responses toward conserved epitopes. Multiple pan-ebolavirus antibodies were identified that react to the Ebola, Sudan, Bundibugyo, and Reston viruses. A pan-filovirus antibody that was reactive to the receptor binding regions of all filovirus glycoproteins was also identified. Significant postexposure efficacy of several MAbs, including a novel antibody cocktail, was demonstrated. For the first time, we report cross-neutralization and in vivo protection against two highly divergent filovirus species, i.e., Ebola virus and Sudan virus, with a single antibody. Competition studies indicate that this antibody targets a previously unrecognized conserved neutralizing epitope that involves the glycan cap. Mechanistic studies indicated that, besides neutralization, innate immune cell effector functions may play a role in the antiviral activity of the antibodies. Our findings further suggest critical novel epitopes that can be utilized to design effective cocktails for broad protection against multiple filovirus species.

IMPORTANCE

Filoviruses represent a major public health threat in Africa and an emerging global concern. Largely driven by the U.S. biodefense funding programs and reinforced by the 2014 outbreaks, current immunotherapeutics are primarily focused on a single filovirus species called Ebola virus (EBOV) (formerly Zaire Ebola virus). However, other filoviruses including Sudan, Bundibugyo, and Marburg viruses have caused human outbreaks with mortality rates as high as 90%. Thus, cross-protective immunotherapeutics are urgently needed. Here, we describe monoclonal antibodies with cross-reactivity to several filoviruses, including the first report of a cross-neutralizing antibody that exhibits protection against Ebola virus and Sudan virus in mice. Our results further describe a novel combination of antibodies with enhanced protective efficacy. These results form a basis for further development of effective immunotherapeutics against filoviruses for human use. Understanding the cross-protective epitopes are also important for rational design of pan-ebolavirus and pan-filovirus vaccines.

摘要

未标记

2014 - 2015年西非爆发的前所未有的埃博拉病毒病(EVD)凸显了对抗丝状病毒有效疗法的必要性。单克隆抗体(MAb)鸡尾酒已显示出作为EVD疗法的巨大潜力;然而,现有的保护性单克隆抗体具有病毒种属特异性。在此,我们报告了通过用经工程改造以驱动B细胞反应朝向保守表位的丝状病毒糖蛋白反复免疫小鼠而产生的泛埃博拉病毒和泛丝状病毒抗体的研发情况。鉴定出了多种与埃博拉、苏丹、本迪布焦和莱斯顿病毒发生反应的泛埃博拉病毒抗体。还鉴定出了一种对所有丝状病毒糖蛋白的受体结合区域有反应的泛丝状病毒抗体。证明了几种单克隆抗体(包括一种新型抗体鸡尾酒)在暴露后具有显著疗效。我们首次报告了用一种单一抗体对两种高度不同的丝状病毒种属,即埃博拉病毒和苏丹病毒进行交叉中和及体内保护。竞争研究表明,这种抗体靶向一个先前未被识别的涉及聚糖帽的保守中和表位。机制研究表明,除了中和作用外,先天免疫细胞效应功能可能在抗体的抗病毒活性中发挥作用。我们的发现进一步揭示了关键的新表位,可用于设计有效的鸡尾酒疗法以广泛保护免受多种丝状病毒种属的侵害。

重要性

丝状病毒是非洲主要的公共卫生威胁,也是一个新出现的全球关注问题。目前的免疫疗法主要由美国生物防御资助项目推动,并因2014年的疫情而得到加强,主要集中在一种名为埃博拉病毒(EBOV)(以前称为扎伊尔埃博拉病毒)的单一丝状病毒种属上。然而,包括苏丹、本迪布焦和马尔堡病毒在内的其他丝状病毒也曾引发人类疫情,死亡率高达90%。因此,迫切需要具有交叉保护作用的免疫疗法。在此,我们描述了对几种丝状病毒具有交叉反应性的单克隆抗体,包括首次报告一种在小鼠中对埃博拉病毒和苏丹病毒具有保护作用的交叉中和抗体。我们的结果还进一步描述了一种具有增强保护效力的新型抗体组合。这些结果为进一步开发用于人类的针对丝状病毒的有效免疫疗法奠定了基础。了解交叉保护表位对于合理设计泛埃博拉病毒和泛丝状病毒疫苗也很重要。

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