Does pasteurization inactivate bird flu virus in milk?

IF 8.4 2区 医学 Q1 IMMUNOLOGY Emerging Microbes & Infections Pub Date : 2024-12-01 Epub Date: 2024-06-16 DOI:10.1080/22221751.2024.2364732
Pengfei Cui, Yichao Zhuang, Yaping Zhang, Lei Chen, Puze Chen, Jiaqi Li, Lulu Feng, Qin Chen, Fei Meng, Huanliang Yang, Yongping Jiang, Guohua Deng, Jianzhong Shi, Hualan Chen, Huihui Kong
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Abstract

Recently, an outbreak of highly pathogenic avian influenza A (H5N1), which carries the clade 2.3.4.4b hemagglutinin (HA) gene and has been prevalent among North American bird populations since the winter of 2021, was reported in dairy cows in the United States. As of 24 May 2024, the virus has affected 63 dairy herds across nine states and has resulted in two human infections. The virus causes unusual symptoms in dairy cows, including an unexpected drop in milk production, and thick colostrum-like milk. Notably, The US Food and Drug Administration reported that around 20% of tested retail milk samples contained H5N1 viruses, with a higher percentage of positive results from regions with infected cattle herds. Data are scant regarding how effectively pasteurization inactivates the H5N1 virus in milk. Therefore, in this study, we evaluated the thermal stability of the H5 clade 2.3.4.4b viruses, along with one human H3N2 virus and other influenza subtype viruses, including H1, H3, H7, H9, and H10 subtype viruses. We also assessed the effectiveness of pasteurization in inactivating these viruses. We found that the avian H3 virus exhibits the highest thermal stability, whereas the H5N1 viruses that belong to clade 2.3.4.4b display moderate thermal stability. Importantly, our data provide direct evidence that the standard pasteurization methods used by dairy companies are effective in inactivating all tested subtypes of influenza viruses in raw milk. Our findings indicate that thermally pasteurized milk products do not pose a safety risk to consumers.

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巴氏杀菌法能否灭活牛奶中的禽流感病毒?
ABSTRACTR最近,美国奶牛中爆发了高致病性甲型禽流感(H5N1),该病毒携带 2.3.4.4b 支系血凝素(HA)基因,自 2021 年冬季以来一直在北美鸟类种群中流行。截至 2024 年 5 月 24 日,该病毒已影响到 9 个州的 63 个奶牛群,并导致 2 例人类感染。该病毒会导致奶牛出现异常症状,包括产奶量意外下降,以及浓稠的类似初乳的牛奶。值得注意的是,美国食品和药物管理局报告称,约 20% 的零售牛奶样本经检测含有 H5N1 病毒,在牛群受到感染的地区,阳性结果的比例更高。有关巴氏杀菌法如何有效灭活牛奶中 H5N1 病毒的数据很少。因此,在本研究中,我们评估了 H5 2.3.4.4b 支系病毒以及一种人类 H3N2 病毒和其他流感亚型病毒(包括 H1、H3、H7、H9 和 H10 亚型病毒)的热稳定性。我们还评估了巴氏杀菌法在灭活这些病毒方面的效果。我们发现,禽 H3 病毒的热稳定性最高,而属于 2.3.4.4b 支系的 H5N1 病毒的热稳定性一般。重要的是,我们的数据提供了直接证据,证明乳制品公司使用的标准巴氏杀菌法能有效灭活生奶中所有受测亚型的流感病毒。我们的研究结果表明,热杀菌牛奶产品不会对消费者构成安全风险。
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来源期刊
Emerging Microbes & Infections
Emerging Microbes & Infections IMMUNOLOGY-MICROBIOLOGY
CiteScore
26.20
自引率
2.30%
发文量
276
审稿时长
20 weeks
期刊介绍: Emerging Microbes & Infections is a peer-reviewed, open-access journal dedicated to publishing research at the intersection of emerging immunology and microbiology viruses. The journal's mission is to share information on microbes and infections, particularly those gaining significance in both biological and clinical realms due to increased pathogenic frequency. Emerging Microbes & Infections is committed to bridging the scientific gap between developed and developing countries. This journal addresses topics of critical biological and clinical importance, including but not limited to: - Epidemic surveillance - Clinical manifestations - Diagnosis and management - Cellular and molecular pathogenesis - Innate and acquired immune responses between emerging microbes and their hosts - Drug discovery - Vaccine development research Emerging Microbes & Infections invites submissions of original research articles, review articles, letters, and commentaries, fostering a platform for the dissemination of impactful research in the field.
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