纳米技术驱动的罗非鱼疫苗策略:纳米乳剂和二氧化硅纳米颗粒对抗无乳链球菌的比较评价。

IF 2 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Veterinary World Pub Date : 2025-07-01 Epub Date: 2025-07-08 DOI:10.14202/vetworld.2025.1807-1818
Angela Mariana Lusiastuti, Siti Nurul Aisyiyah Jenie, Melati Septiyanti, Yulianti Sampora, Tanjung Penataseputro, Thavasimutu Citarasu, Desy Sugiani, Dewi Syahidah, Indah Dwiatmi Dewijanti, Hessy Novita, Tuti Sumiati, Uni Purwaningsih, Suryanto Suryanto, Brata Pantjara, Taufik Hadi Ramli, Pramuanggit Panggih Nugroho, Khairun Nisaa, Annisa Wening Maharani Putri
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引用次数: 0

摘要

由无乳链球菌引起的链球菌病是罗非鱼养殖中的一种重要疾病,会造成巨大的经济损失。虽然接种疫苗是最有效的预防方法,但目前的疫苗在口服或浸泡时面临挑战,主要是由于鱼的消化系统吸收和降解不良。纳米技术提供了改善疫苗输送和有效性的新方法。这篇综述比较了两种基于纳米颗粒(NPs)的系统——纳米乳剂和二氧化硅NPs (SiNP)——为罗非鱼提供疫苗。纳米乳剂是一种小而稳定的液滴,可以保护疫苗并帮助其粘附在粘膜表面,从而更有效地引发免疫反应。SiNP高度稳定,可以在恶劣条件下保护疫苗,但在颗粒大小和疫苗装载方面仍面临挑战。这篇综述强调了影响疫苗有效性的重要因素,包括颗粒大小、稳定性和表面活性剂组成。实际上,纳米乳剂更适合在印度尼西亚的热带水产养殖环境中使用,因为它们在目前的配方中更容易应用、更稳定、更有效。需要进一步的研究来改进这两种系统,特别是确保长期安全性,改善粘膜组织的递送,降低生产成本。基于纳米技术的疫苗具有改善鱼类健康和减少水产养殖中抗生素使用的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nanotechnology-driven strategies for tilapia vaccines: Comparative evaluation of nanoemulsions and silica nanoparticles against <i>Streptococcus agalactiae</i>.

Nanotechnology-driven strategies for tilapia vaccines: Comparative evaluation of nanoemulsions and silica nanoparticles against <i>Streptococcus agalactiae</i>.

Nanotechnology-driven strategies for tilapia vaccines: Comparative evaluation of nanoemulsions and silica nanoparticles against <i>Streptococcus agalactiae</i>.

Nanotechnology-driven strategies for tilapia vaccines: Comparative evaluation of nanoemulsions and silica nanoparticles against Streptococcus agalactiae.

Streptococcosis, caused by Streptococcus agalactiae, is a significant disease in tilapia farming that results in substantial economic losses. While vaccination is the most effective method for prevention, current vaccines face challenges when administered orally or through immersion, primarily due to poor absorption and degradation in the fish's digestive system. Nanotechnology offers new ways to improve vaccine delivery and effectiveness. This review compares two nanoparticle (NPs)-based systems - nanoemulsions and silica NPs (SiNP) - for delivering vaccines to tilapia. Nanoemulsions are small, stable droplets that protect the vaccine and help it stick to mucosal surfaces, making them more effective in triggering immune responses. SiNP are highly stable and can protect vaccines under harsh conditions but still face challenges in particle size and vaccine loading. The review highlights important factors, including particle size, stability, and surfactant composition, that affect the vaccine's effectiveness. In practical terms, nanoemulsions are more suitable for use in Indonesia's tropical aquaculture settings because they are easier to apply, more stable, and more effective in their current formulations. Further research is needed to improve both systems, especially to ensure long-term safety, improve delivery to mucosal tissues, and reduce production costs. Nanotechnology-based vaccines have a strong potential to improve fish health and reduce antibiotic use in aquaculture.

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来源期刊
Veterinary World
Veterinary World Multiple-
CiteScore
3.60
自引率
12.50%
发文量
317
审稿时长
16 weeks
期刊介绍: Veterinary World publishes high quality papers focusing on Veterinary and Animal Science. The fields of study are bacteriology, parasitology, pathology, virology, immunology, mycology, public health, biotechnology, meat science, fish diseases, nutrition, gynecology, genetics, wildlife, laboratory animals, animal models of human infections, prion diseases and epidemiology. Studies on zoonotic and emerging infections are highly appreciated. Review articles are highly appreciated. All articles published by Veterinary World are made freely and permanently accessible online. All articles to Veterinary World are posted online immediately as they are ready for publication.
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