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一种重组单链抗体可中和冠状病毒的感染性,但仅略微延迟小鼠的致死性感染。

A recombinant single chain antibody neutralizes coronavirus infectivity but only slightly delays lethal infection of mice.

作者信息

Lamarre A, Yu M W, Chagnon F, Talbot P J

机构信息

Laboratory of Neuroimmunovirology, Virology Research Center, Institut Armand-Frappier, Université du Québec, Laval, Canada.

出版信息

Eur J Immunol. 1997 Dec;27(12):3447-55. doi: 10.1002/eji.1830271245.

Abstract

The variable region genes of a murine anti-coronavirus monoclonal antibody (mAb) were joined by assembly polymerase chain reaction and expressed in Escherichia coli in a single chain variable fragment (scFv) configuration. After induction of expression, the expected 32-kDa protein was identified by Western immunoblotting with specific rabbit anti-idiotype antibodies. The scFv fragments were purified from soluble cytoplasmic preparations by affinity chromatography on nickel agarose, which was possible with an N-terminal but not with a C-terminal histidine tag. Purified scFv fragments retained the antigen-binding properties of the parental antibody, could inhibit its binding to viral antigens with apparently higher efficiency than monovalent antigen-binding (Fab) fragments, but neutralized viral infectivity with lower efficiency (about sevenfold at a molar level). To evaluate the usefulness of these smaller and less immunogenic molecules in the treatment of viral diseases, mice were treated with purified recombinant scFv fragments and challenged with a lethal viral dose. A small delay in mortality was observed for the scFv-treated animals. Therefore, even though the scFv could neutralize viral infectivity in vitro, the same quantity of fragments that partially protected mice in the form of Fab only slightly delayed virus-induced lethality when injected as scFv fragments, probably because of a much faster in vivo clearance: the biologic half-life was estimated to be about 6 min. Since a scFv derived from a highly neutralizing and protective mAb is only marginally effective in the passive protection of mice from lethal viral infection, the use of such reagents for viral immunotherapy will require strategies to overcome stability limitations.

摘要

通过组装聚合酶链反应连接鼠抗冠状病毒单克隆抗体(mAb)的可变区基因,并以单链可变片段(scFv)构型在大肠杆菌中表达。诱导表达后,用特异性兔抗独特型抗体进行Western免疫印迹鉴定出预期的32 kDa蛋白。通过镍琼脂糖亲和层析从可溶性细胞质制剂中纯化scFv片段,N端带有组氨酸标签时可行,而C端带有组氨酸标签时则不行。纯化的scFv片段保留了亲本抗体的抗原结合特性,能抑制其与病毒抗原的结合,效率明显高于单价抗原结合(Fab)片段,但中和病毒感染性的效率较低(摩尔水平下约为七倍)。为了评估这些较小且免疫原性较低的分子在治疗病毒性疾病中的效用,用纯化的重组scFv片段处理小鼠,然后用致死剂量的病毒进行攻击。观察到scFv处理的动物死亡率略有延迟。因此,尽管scFv在体外能中和病毒感染性,但相同数量的片段以Fab形式能部分保护小鼠,而以scFv片段注射时仅略微延迟病毒诱导的致死率,这可能是因为体内清除速度快得多:其生物学半衰期估计约为6分钟。由于源自高度中和和保护性mAb的scFv在被动保护小鼠免受致死性病毒感染方面仅具有微弱效果,因此使用此类试剂进行病毒免疫治疗将需要克服稳定性限制的策略。

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本文引用的文献

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