Hexane extract from black soldier fly prepupae: A novel immunomodulatory strategy against Aeromonas hydrophila infection in zebrafish.

IF 1.7 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Veterinary World Pub Date : 2024-07-01 Epub Date: 2024-07-30 DOI:10.14202/vetworld.2024.1655-1660
Dahliatul Qosimah, Indah Amalia Amri, Dyah Ayu Oktavianie A Pratama, Fajar Shodiq Permata, Noorhamdani Noorhamdani, Dhelya Widasmara, Jasni Sabri
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Abstract

Background and aim: Aeromonas hydrophila infections in fish result in significant financial losses within aquaculture. Previous research indicates black soldier fly (BSF) prepupae provide immunomodulatory benefits through their fatty acids, chitin, and proteins. The study evaluated the impact of hexane extract from black soldier fly prepupae (HEBP) on interleukin (IL)-4 and IL-10 cytokine expression in zebrafish, both infected and uninfected with A. hydrophila.

Materials and methods: Adult zebrafish (aged 4-5 months) was assigned to a negative control group (fed commercial feed), a positive control group (commercial feed + A. hydrophila infection at 107 colony-forming unit/mL), and three treatment groups (T1, T2, T3) that received HEBP at doses of 1000; 2000 and 4000 mg/kg feed for 30 days, respectively. A. hydrophila infection was introduced on day 31 through immersion. Analysis of IL-4 and IL-10 expression in the head kidney trunk region (body without head and tail) through quantitative polymerase chain reaction was conducted on day 33.

Results: The HEBP modulated the immune response to A. hydrophila infection at a concentration of 1000 mg/kg feed, as evidenced by an increase in IL-4 and IL-10 expression in the groups not infected with the bacteria. However, these cytokines were decreased in the infected groups.

Conclusion: A feed concentration of 1000 mg/kg HEBP was identified as optimal for cytokine modulation. This discovery marks a significant advancement in the development and benefit of a natural extract-based immunomodulator in a zebrafish model, which is potentially immunotherapeutic against bacterial infections in fish for the aquaculture industry.

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黑色兵蝇前蛹的己烷提取物:对抗斑马鱼嗜水气单胞菌感染的新型免疫调节策略
背景和目的:鱼类感染嗜水气单胞菌(Aeromonas hydrophila)会给水产养殖业造成重大经济损失。以前的研究表明,黑翅飞蚊的前蛹(BSF)通过脂肪酸、几丁质和蛋白质提供免疫调节益处。本研究评估了黑翅飞蚊前蛹的正己烷提取物(HEBP)对感染和未感染嗜水气蝇的斑马鱼体内白细胞介素(IL)-4 和 IL-10 细胞因子表达的影响:将成年斑马鱼(4-5 个月大)分为阴性对照组(喂食商品饲料)、阳性对照组(商品饲料 + 感染嗜水青虫,菌落形成单位为 107 个/毫升)和三个处理组(T1、T2、T3),处理组接受 HEBP 的剂量分别为 1000、2000 和 4000 毫克/千克饲料,为期 30 天。第 31 天通过浸泡法引入蚜虫感染。第33天,通过定量聚合酶链式反应分析头肾躯干区(身体无头和尾)的IL-4和IL-10表达情况:结果:在 1000 mg/kg 饲料浓度下,HEBP 可调节蚜蝇感染的免疫反应,这表现在未感染细菌的组中 IL-4 和 IL-10 的表达增加。结论:饲料浓度为 1000 毫克/千克水飞蓟马时,水飞蓟马感染组的 IL-4 和 IL-10 表达量增加,而感染组的这些细胞因子表达量减少:结论:1000 毫克/千克 HEBP 的饲料浓度是调节细胞因子的最佳浓度。这一发现标志着以天然提取物为基础的免疫调节剂在斑马鱼模型中的开发和效益方面取得了重大进展,有可能为水产养殖业提供针对鱼类细菌感染的免疫疗法。
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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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