首页> 外文期刊>Veterinary Microbiology >Passive immunization of pigs with bispecific llama single-domain antibody fragments against foot-and-mouth disease and porcine immunoglobulin.
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Passive immunization of pigs with bispecific llama single-domain antibody fragments against foot-and-mouth disease and porcine immunoglobulin.

机译:用针对口蹄疫和猪免疫球蛋白的双特异性美洲驼单域抗体片段对猪进行被动免疫。

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Foot-and-mouth disease (FMD) is a contagious viral disease of cloven-hoofed animals that occasionally causes outbreaks in Europe. We aim to develop an immunotherapy that confers rapid protection against FMD in outbreak situations. For this purpose, we previously isolated llama single-domain antibody fragments (VHHs) binding to FMDV or porcine immunoglobulin (pIg). The pIg binding VHHs can be genetically fused to other VHHs, resulting in so-called VHH2s. As compared to non-pIg binding VHHs such VHH2s have a 100-fold increased serum half-life which is essential for effective immunotherapy. We have now produced three bispecific VHH2s by fusion of three FMDV binding VHHs (clones M3, M8 and M23) to a pIg binding VHH (VI-4). The resulting yeast-produced VHH2s bound FMDV and pIg with high affinity (K(D) about 1nM) and neutralized FMDV in vitro as efficiently as their monovalent counterparts. To evaluate their therapeutic potential all three VHH2s were intramuscularly injected into pigs that were challenge infected with FMDV 24h later. Administration of one of these VHH2s (M23ggsVI-4) reduced the viremia significantly (P=0.0034) and reduced viral shedding almost significantly (P=0.11). However, it did not prevent development of clinical signs or transmission of FMDV. These results suggest that immunotherapy using bispecific VHH2s binding to FMDV and pIg is possible in principle, but should be improved by increasing VHH2 dosage or using more potent VHH2s.
机译:口蹄疫(FMD)是偶蹄类动物的一种传染性病毒病,偶尔会在欧洲引起疾病暴发。我们的目标是开发一种免疫疗法,以在爆发情况下提供快速防御口蹄疫的保护。为此,我们先前分离了与FMDV或猪免疫球蛋白(pIg)结合的美洲驼单域抗体片段(VHHs)。可以将与pIg结合的VHH与其他VHH遗传融合,产生所谓的VHH2。与非pIg结合的VHH相比,这种VHH2具有100倍的增加的血清半衰期,这对于有效的免疫疗法是必不可少的。现在,我们通过将三个FMDV结合VHH(克隆M3,M8和M23)与pIg结合VHH(VI-4)融合,产生了三个双特异性VHH2。所得酵母产生的VHH2以高亲和力(K(D)约1nM)结合FMDV和pIg,并在体外有效地中和FMDV,如同其一价对应物一样。为了评估其治疗潜力,将所有三种VHH2肌肉注射24小时后感染FMDV的猪。施用这些VHH2中的一种(M23ggsVI-4)可以显着降低病毒血症(P = 0.0034),并且几乎可以显着降低病毒脱落(P = 0.11)。然而,它并不能阻止临床症状的发展或FMDV的传播。这些结果表明,原则上可能使用结合FMDV和pIg的双特异性VHH2s进行免疫治疗,但应通过增加VHH2剂量或使用更有效的VHH2s进行改进。

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