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Effect of Supplementation with Black Soldier Fly Extract on Intestinal Function in Piglets Infected with Porcine Epidemic Diarrhea Virus.添加黑水虻提取物对感染猪流行性腹泻病毒仔猪肠道功能的影响。
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An endogenous promoter discovered in duckweed: a promising transgenic tool for plants.浮萍中发现的一种内源启动子:一种有前景的植物转基因工具。
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浮萍作为动物养殖业中的可食用疫苗。

Duckweeds as edible vaccines in the animal farming industry.

作者信息

Sembada Anca Awal, Theda Yohanes, Faizal Ahmad

机构信息

Research Center for New and Renewable Energy, Bandung Institute of Technology, Bandung, 40132 Indonesia.

Forestry Technology Research Group, School of Life Sciences and Technology, Bandung Institute of Technology, Bandung, 40132 Indonesia.

出版信息

3 Biotech. 2024 Oct;14(10):222. doi: 10.1007/s13205-024-04074-8. Epub 2024 Sep 6.

DOI:10.1007/s13205-024-04074-8
PMID:39247453
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11379843/
Abstract

Animal diseases are among the most debilitating issues in the animal farming industry, resulting in decreased productivity and product quality worldwide. An emerging alternative to conventional injectable vaccines is edible vaccines, which promise increased delivery efficiency while maintaining vaccine effectiveness. One of the most promising platforms for edible vaccines is duckweeds, due to their high growth rate, ease of transformation, and excellent nutritional content. This review explores the potential, feasibility, and advantages of using duckweeds as platforms for edible vaccines. Duckweeds have proven to be superb feed sources, as evidenced by numerous improvements in both quantity (e.g., weight gain) and quality (e.g., yolk pigmentation). In terms of heterologous protein production, duckweeds, being plants, are capable of expressing proteins with complex structures and post-translational modifications. Research efforts have focused on the development of duckweed-based edible vaccines, including those against avian influenza, tuberculosis, Newcastle disease, and mastitis, among others. As with any emerging technology, the development of duckweeds as a platform for edible vaccines is still in its early stages compared to well-established injectable vaccines. It is evident that more proof-of-concept studies are required to bring edible vaccines closer to the current standards of conventional vaccines. Specifically, the duckweed expression system needs further development in areas such as yield and growth rate, especially when compared to bacterial and mammalian expression systems. Continued efforts in this field could lead to breakthroughs that significantly improve the resilience of the animal farming industry against disease threats.

摘要

动物疾病是畜牧业中最具破坏性的问题之一,导致全球生产力和产品质量下降。可食用疫苗是传统注射用疫苗的一种新兴替代品,有望在保持疫苗有效性的同时提高递送效率。浮萍是最有前途的可食用疫苗平台之一,因为它们生长速度快、易于转化且营养成分优良。本文综述探讨了将浮萍用作可食用疫苗平台的潜力、可行性和优势。浮萍已被证明是极好的饲料来源,在数量(如体重增加)和质量(如蛋黄色素沉着)方面的诸多改善都证明了这一点。就异源蛋白生产而言,浮萍作为植物能够表达具有复杂结构和翻译后修饰的蛋白质。研究工作集中在基于浮萍的可食用疫苗的开发上,包括针对禽流感、结核病、新城疫和乳腺炎等疾病的疫苗。与任何新兴技术一样,与成熟的注射用疫苗相比,浮萍作为可食用疫苗平台的开发仍处于早期阶段。显然,需要更多的概念验证研究,以使可食用疫苗更接近传统疫苗的现行标准。具体而言,浮萍表达系统在产量和生长速度等方面需要进一步发展,尤其是与细菌和哺乳动物表达系统相比时。该领域的持续努力可能会带来突破,显著提高畜牧业抵御疾病威胁的能力。