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结构域抗体可以保护小鼠免受 H5N2 流感病毒的感染。

Formatted single-domain antibodies can protect mice against infection with influenza virus (H5N2).

机构信息

Institute of Gene Biology, Russian Academy of Sciences, Moscow, Russia.

出版信息

Antiviral Res. 2013 Mar;97(3):245-54. doi: 10.1016/j.antiviral.2012.12.014. Epub 2012 Dec 25.

Abstract

This work continues a series of recently published studies that employ recombinant single-domain antibody (sdAb, or nanobody®) generation technologies to battle viruses by a passive immunization approach. As a proof of principle, we describe a modified technique to efficiently generate protective molecules against a particular strain of influenza virus within a reasonably short period of time. This approach starts with the immunization of a camel (Camelus bactrianus) with the specified antigen-enriched material presented in as natural a form as possible. An avian influenza virus A/Mallard/Pennsylvania/10218/84 (H5N2) adapted for mice was used as a model source of antigens for both the immunization and phage display-based selection procedures. To significantly increase activities of initially selected monovalent single-domain antibodies, we propose a new type of sdAb formatting that involves the addition of a special type of coiled-coil sequence, the isoleucine zipper domain (ILZ). Presumably, the ILZ-containing peptides adopt trimeric parallel conformations. After the formatting, the biological activities (virus neutralization) of the initially selected anti-influenza virus (H5N2) sdAbs were significantly increased. Intraperitoneal or intranasal administration of the formatted sdAb at 2h before or 24h after viral challenge specifically protects mice from lethal infection with influenza virus. We hope that the described approach combined with the selection focused on particular conservative epitopes will lead to the generation of sdAb-based molecules protective against a broad spectrum of influenza virus subtypes.

摘要

这项工作是最近发表的一系列研究的延续,这些研究采用重组单域抗体(sdAb,或纳米抗体®)生成技术,通过被动免疫的方法来对抗病毒。作为一个原理验证,我们描述了一种改良的技术,可在合理的短时间内有效地针对特定流感病毒株生成保护分子。这种方法首先用尽可能自然的形式用特异性抗原富集材料免疫骆驼(Camelus bactrianus)。适应于小鼠的禽流感病毒 A/Mallard/Pennsylvania/10218/84(H5N2)被用作免疫和噬菌体展示选择程序的抗原模型来源。为了显著提高最初选择的单价单域抗体的活性,我们提出了一种新的 sdAb 格式化类型,该类型涉及添加特殊类型的卷曲螺旋序列,即异亮氨酸拉链结构域(ILZ)。推测含有 ILZ 的肽采用三聚体平行构象。格式化后,最初选择的抗流感病毒(H5N2)sdAb 的生物学活性(病毒中和)显著提高。在病毒攻击前 2 小时或后 24 小时通过腹腔内或鼻内给予格式化的 sdAb 可特异性保护小鼠免受流感病毒的致死感染。我们希望所描述的方法与针对特定保守表位的选择相结合,将导致生成针对广泛的流感病毒亚型的基于 sdAb 的保护分子。

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