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一种保护虹鳟鱼免受鲁氏耶尔森氏菌O1生物型2感染的疫苗接种方法的比较评估

Comparative evaluation of administration methods for a vaccine protecting rainbow trout against Yersinia ruckeri O1 biotype 2 infections.

作者信息

Chettri Jiwan Kumar, Deshmukh Sidhartha, Holten-Andersen Lars, Jafaar Rzgar M, Dalsgaard Inger, Buchmann Kurt

机构信息

Laboratory of Aquatic Pathobiology, Department of Veterinary Disease Biology, Faculty of Health and Medical Sciences, University of Copenhagen, Denmark.

出版信息

Vet Immunol Immunopathol. 2013 Jul 15;154(1-2):42-7. doi: 10.1016/j.vetimm.2013.04.001. Epub 2013 Apr 8.

Abstract

Numerous outbreaks of enteric red mouth disease (ERM) caused by Yersinia ruckeri O1 biotype 2 in rainbow trout farms are currently being recorded despite established vaccination procedures against this disease. This could indicate that the currently used application of single immersion vaccination (using a commercial vaccine AquaVac(®) RELERA™) does not provide full protection. We elucidated by a controlled duplicated experiment if different vaccine administration methods can improve level and extent of protection. Rainbow trout, Oncorhynchus mykiss were vaccinated by: (1) a single immersion in bacterin diluted 1:10 for 30s (only primary vaccination); (2) two times 30s immersion (primary immersion vaccination followed by booster immersion vaccination 1 month later); (3) a single i.p. injection (only primary vaccination); (4) immersion vaccination followed by injection booster 1 month later; (5) a single 1h bath in bacterin diluted 1:2000; and (6) immersion (30s, 1:10) plus booster (1h in diluted 1:2000 vaccine) 5 months later). Injection challenge experiments were performed 3, 5 and 7 months post primary vaccination with 8.5×10(6) CFU/fish, 10.6×10(6) CFU/fish and 1×10(8) CFU/fish, respectively. In the first challenge trial, control fish exhibited a mortality of 76%, one time immersion vaccination had a mortality of 37%, two times immersion vaccinated fish had a 4% mortality, the one-time injection vaccinated group showed a mortality of 2% and the immersion plus injection boostered fish showed no mortality at all. When rainbow trout were challenged 5 months post primary vaccination, 26% mortality occurred in control fish, 21% in one time immersion group, 12% in two times immersion group, 5% in the one-time injection vaccinated group whereas immersion plus injection boostered fish again showed no mortality at all. When challenged 7 months post vaccination, one-time immersion vaccinated were not protected at all compared to the control group whereas injection vaccinated fish showed lower mortality (17%) compared to booster immersed fish (32% mortality) which was still better than un-vaccinated controls (44% mortality). It was noteworthy that a diluted bacterin (1:2000 for 1h after 5 months post primary vaccination) booster showed the same effect as a booster with 1:10 bacterin dilution for 30s applied 1 month after primary vaccination. Antibody levels showing significant elevations 28 days post challenge in vaccinated fish point to this immune parameter as a protective element. The superior and extended protection offered by booster vaccination or simply injection is noteworthy and may be applied in future vaccination strategies at farm level.

摘要

尽管已有针对该病的既定疫苗接种程序,但目前在虹鳟鱼养殖场中,由鲁氏耶尔森菌O1生物型2引起的肠道红嘴病(ERM)仍有多次暴发记录。这可能表明,目前使用的单次浸浴疫苗接种(使用商业疫苗AquaVac(®) RELERA™)并不能提供全面保护。我们通过一项对照重复实验,研究了不同的疫苗接种方法是否能提高保护水平和范围。虹鳟(Oncorhynchus mykiss)通过以下方式接种疫苗:(1)单次浸浴于稀释1:10的菌苗中30秒(仅初次接种);(2)两次浸浴,每次30秒(初次浸浴接种,1个月后进行加强浸浴接种);(3)单次腹腔注射(仅初次接种);(4)浸浴接种后1个月进行注射加强;(5)在稀释1:2000的菌苗中单次浸浴1小时;(6)浸浴(30秒,1:10),5个月后进行加强(在稀释1:2000的疫苗中浸浴1小时)。在初次接种疫苗后3、5和7个月分别进行注射攻毒实验,攻毒剂量分别为8.5×10(6) CFU/鱼、10.6×10(6) CFU/鱼和1×10(8) CFU/鱼。在首次攻毒试验中,对照鱼死亡率为76%,单次浸浴接种鱼死亡率为37%,两次浸浴接种鱼死亡率为4%,单次注射接种组死亡率为2%,浸浴加注射加强组鱼完全没有死亡。在初次接种疫苗5个月后对虹鳟进行攻毒时,对照鱼死亡率为26%,单次浸浴组为21%,两次浸浴组为12%,单次注射接种组为5%,而浸浴加注射加强组鱼再次完全没有死亡。在接种疫苗7个月后进行攻毒时,与对照组相比,单次浸浴接种的鱼完全没有得到保护,而注射接种的鱼死亡率较低(17%),相比加强浸浴接种的鱼(死亡率32%)仍优于未接种疫苗的对照组(死亡率44%)。值得注意的是,初次接种疫苗5个月后用稀释菌苗(1:2000,浸浴1小时)进行加强,与初次接种疫苗1个月后用1:10菌苗稀释液进行30秒加强的效果相同。攻毒后28天,接种疫苗的鱼体内抗体水平显著升高,表明该免疫参数是一个保护因素。加强接种或单纯注射所提供的卓越且持久的保护值得关注,未来可能应用于养殖场层面的疫苗接种策略。

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