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Oral Vaccination of Fish – Antigen Preparations Uptake and Immune Induction

机译:鱼类的口服疫苗–抗原制剂摄取和免疫诱导

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摘要

The oral route offers the most attractive approach of immunization of fish for a number of reasons: the ease of administration of antigens, it is less stressful than parenteral delivery and in principle, it is applicable to small and large sized fish; it also provides a procedure for oral boosting during grow-out periods in cages or ponds. There are, however, not many commercial vaccines available at the moment due to lack of efficacy and challenges associated with production of large quantities of antigens. These are required to stimulate an effective immune response locally and systemically, and need to be protected against degradation before they reach the sites where immune induction occurs. The hostile stomach environment is believed to be particularly important with regard to degradation of antigens in certain species. There is also a poor understanding about the requirements for proper immune induction following oral administration on one side, and the potential for induction of tolerance on the other. To what extent primary immunization via the oral route will elicit both local and systemic responses is not understood in detail. Furthermore, to what extent parenteral delivery will protect mucosal/gut surfaces and vice-versa is also not fully understood. We review the work that has been done on the subject and discuss it in light of recent advances that include mass production of antigens, including the use of plant systems. Different encapsulation techniques that have been developed in the quest to protect antigens against digestive degradation, as well as to target them for appropriate immune induction are also highlighted.
机译:出于多种原因,口服途径提供了最诱人的鱼类免疫方法:抗原的给药简便,与肠胃外给药相比压力较小,原则上适用于小型和大型鱼类。它还提供了在网箱或池塘成年期口服助推的程序。然而,由于缺乏功效和与大量抗原产生相关的挑战,目前没有许多商业疫苗可用。这些是刺激局部和全身有效免疫应答所必需的,并且在它们到达发生免疫诱导的部位之前,需要保护它们免于降解。据信,对于某些物种中的抗原降解,不利的胃环境特别重要。对于一侧口服给药后适当免疫诱导的要求,以及另一方面诱导耐受性的潜力,人们还缺乏了解。通过口服途径的初次免疫将引起局部和全身反应的程度尚不清楚。此外,肠胃外递送在多大程度上可以保护粘膜/肠表面,反之亦然。我们回顾了有关该主题的工作,并根据包括抗原生产和使用植物系统在内的最新进展进行了讨论。还强调了为保护抗原免于消化降解以及将其靶向适当的免疫诱导而开发的不同封装技术。

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