电子束杀死葡萄球菌疫苗可减轻肉鸡跛足症状

IF 5.2 3区 医学 Q1 IMMUNOLOGY
Vaccines Pub Date : 2024-10-23 DOI:10.3390/vaccines12111203
Anna L F V Assumpcao, Komala Arsi, Andi Asnayanti, Khawla S Alharbi, Anh D T Do, Quentin D Read, Ruvindu Perera, Abdulkarim Shwani, Amer Hasan, Suresh D Pillai, Robin C Anderson, Annie M Donoghue, Douglas D Rhoads, Palmy R R Jesudhasan, Adnan A K Alrubaye
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引用次数: 0

摘要

细菌性软骨坏死伴骨髓炎(BCO)引起的肉鸡跛行是家禽业目前面临的最重要的经济和动物福利问题之一,估计经济损失约为 1.5 亿美元。BCO 跛足与栖息在呼吸道和胃肠道的多种机会性细菌病原体有关。在应激、损伤或组织炎症导致免疫缺陷的情况下,机会性病原体(主要是葡萄球菌属)可浸润呼吸道或胃肠道粘膜,并通过血液迁移,最终定植于长骨的生长板,引起坏死,导致跛行。这是首次关于开发肉鸡 BCO 跛足病葡萄球菌疫苗的报道。电子束(eBeam)技术会造成不可修复的 DNA 损伤,阻止细菌繁殖,同时保持细胞膜表位的完整,帮助免疫系统产生更有效的反应。我们的研究结果表明,与对照组相比,接种 eBeam 疫苗的鸡跛足发病率降低了 50%。此外,接种过 eBeam 疫苗的鸡体内抗葡萄球菌 IgA 滴度更高,这表明它们产生了更有效、更特异的体液免疫反应。我们的数据证明,电子束杀灭葡萄球菌疫苗是降低肉鸡跛足发病率的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron-Beam-Killed Staphylococcus Vaccine Reduced Lameness in Broiler Chickens.

Broiler chicken lameness caused by bacterial chondronecrosis with osteomyelitis (BCO) is presently amongst the most important economic and animal welfare issues faced by the poultry industry, and the estimated economic loss is around USD 150 million. BCO lameness is associated with multiple opportunistic bacterial pathogens inhabiting the respiratory and gastrointestinal tracts. In cases of immune deficiency resulting from stress, injury, or inflammation of the tissue, opportunistic pathogens, mainly Staphylococcus spp., can infiltrate the respiratory or gastrointestinal mucosa and migrate through the bloodstream to eventually colonize the growth plates of long bones, causing necrosis that leads to lameness. This is the first report of developing a Staphylococcus vaccine against BCO lameness disease in broiler chickens. Electron beam (eBeam) technology causes irreparable DNA damage, preventing bacterial multiplication, while keeping the epitopes of the cell membrane intact, helping the immune system generate a more effective response. Our results show a 50% reduction of lameness incidence in the eBeam-vaccinated chicken group compared to the control. Additionally, the eBeam-vaccinated chickens present higher titer of anti-Staphylococcus IgA, signifying the development of an efficient and more specific humoral immune response. Our data establish the eBeam-killed Staphylococcus vaccine as an effective approach to reducing the incidence of lameness in broiler chickens.

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来源期刊
Vaccines
Vaccines Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
8.90
自引率
16.70%
发文量
1853
审稿时长
18.06 days
期刊介绍: Vaccines (ISSN 2076-393X) is an international, peer-reviewed open access journal focused on laboratory and clinical vaccine research, utilization and immunization. Vaccines publishes high quality reviews, regular research papers, communications and case reports.
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