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德国五个地方流行感染猪群中断奶仔猪的甲型H1N1流感病毒感染动态:一项队列研究

Dynamic of swine influenza virus infection in weaned piglets in five enzootically infected herds in Germany, a cohort study.

作者信息

Schmies Kathrin, Hennig Christin, Rose Nicolas, Fablet Christelle, Harder Timm, Grosse Beilage Elisabeth, Graaf-Rau Annika

机构信息

Field Station for Epidemiology, University of Veterinary Medicine Hannover, Foundation, Bakum, Germany.

Institute of Diagnostic Virology, Friedrich-Loeffler-Institut, Greifswald-Insel Riems, Germany.

出版信息

Porcine Health Manag. 2024 Oct 1;10(1):36. doi: 10.1186/s40813-024-00390-w.

Abstract

BACKGROUND

Within the last decades industrial swine herds in Europe grown significantly, creating an optimized reservoir for swine influenza A viruses (swIAV) to become enzootic, particularly in piglet producing herds among newborn, partly immunologically naïve piglets. To date, the only specific control measure to protect piglets from swIAV is the vaccination of sows, which provides passive immunity through maternally derived antibodies in colostrum of vaccinated sows. Interruption of infection chains through management practices have had limited success. This study focused on weaned piglets in five enzootically swIAV infected swine herds in North-West and North-East Germany and aimed to better understand swIAV infection patterns to improve piglet protection and reduce zoonotic risks. Participating farms fulfilled the following inclusion criteria: sow herd with ≥ 400 sows (actual size 600-1850 sows), piglets not vaccinated against influenza A virus and a history of recurrent respiratory problems associated with continuing influenza A virus infection. Influenza vaccination was performed in all sow herds, except for one, which discontinued vaccination during the study.

RESULTS

First swIAV detections in weaned piglets occurred at 4 weeks of age in the nursery and continued to be detected in piglets up to 10 weeks of age showing enzootic swIAV infections in all herds over the entire nursery period. This included simultaneous circulation of two subtypes in a herd and co-infection with two subtypes in individual animals. Evidence for prolonged (at least 13 days) shedding was obtained in one piglet based on two consecutive swIAV positive samplings. Possible re-infection was suspected in twelve piglets based on three samplings, the second of which was swIAV negative in contrast to the first and third sampling which were swIAV positive. However, swIAV was not detected in nasal swabs from either suckling piglets or sows in the first week after farrowing.

CONCLUSIONS

Predominantly, weaned piglets were infected. There was no evidence of transmission from sow to piglet based on swIAV negative nasal swabs from sows and suckling piglets. Prolonged virus shedding by individual piglets as well as the co-circulation of different swIAV subtypes in a group or even individuals emphasize the potential of swIAV to increase genetic (and potentially phenotypic) variation and the need to continue close monitoring. Understanding the dynamics of swIAV infections in enzootically infected herds has the overall goal of improving protection to reduce economic losses due to swIAV-related disease and consequently to advance animal health and well-being.

摘要

背景

在过去几十年中,欧洲的工业化养猪场规模显著扩大,为甲型猪流感病毒(swIAV)成为地方性流行病毒创造了理想的宿主环境,尤其是在新生仔猪部分免疫原性幼稚的仔猪生产群中。迄今为止,保护仔猪免受swIAV感染的唯一具体控制措施是给母猪接种疫苗,通过接种疫苗的母猪初乳中的母源抗体提供被动免疫。通过管理措施中断感染链的成效有限。本研究聚焦于德国西北部和东北部五个地方性流行swIAV感染猪群中的断奶仔猪,旨在更好地了解swIAV感染模式,以加强仔猪保护并降低人畜共患病风险。参与研究的农场符合以下纳入标准:母猪存栏量≥400头(实际规模为600 - 1850头母猪),仔猪未接种甲型流感病毒疫苗,且有与持续甲型流感病毒感染相关的反复呼吸道问题病史。除一个在研究期间停止接种疫苗的母猪群外,所有母猪群均进行了流感疫苗接种。

结果

断奶仔猪首次检测到swIAV是在保育舍4周龄时,在整个保育期内,直至10周龄的仔猪中均持续检测到swIAV,表明所有猪群均存在地方性swIAV感染。这包括一个猪群中两种亚型同时流行以及个别动物同时感染两种亚型。基于一头仔猪连续两次swIAV阳性采样,获得了其病毒 shedding 延长(至少13天)的证据。基于三次采样,怀疑12头仔猪可能再次感染,其中第二次采样swIAV呈阴性,而第一次和第三次采样swIAV呈阳性。然而,在分娩后第一周的哺乳仔猪或母猪的鼻拭子中均未检测到swIAV。

结论

主要是断奶仔猪受到感染。基于母猪和哺乳仔猪swIAV阴性鼻拭子,没有证据表明存在从母猪到仔猪的传播。个别仔猪病毒 shedding 延长以及不同swIAV亚型在群体甚至个体中的共同流行,凸显了swIAV增加基因(以及潜在表型)变异的可能性,以及持续密切监测的必要性。了解地方性感染猪群中swIAV感染的动态变化,总体目标是加强保护,减少因swIAV相关疾病造成的经济损失,从而促进动物健康和福利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de1f/11446054/b1774d0efbc9/40813_2024_390_Fig1_HTML.jpg

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