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探究蜂毒和银纳米粒子在控制幼虫腐烂病病原体和延长蜜蜂寿命方面的应用。

Exploring bee venom and silver nanoparticles for controlling foulbrood pathogen and enhancing lifespan of honeybees.

机构信息

National Institute of Laser Enhanced Sciences, Cairo University, Giza, 12613, Egypt.

Bee Research Department (BRD), Agriculture Research Center (ARC), Plant Protection Research Institute (PPRI), Giza, 12619, Egypt.

出版信息

Sci Rep. 2024 Aug 16;14(1):19013. doi: 10.1038/s41598-024-67515-7.

Abstract

The beekeeping industry plays a crucial role in local economies, contributing significantly to their growth. However, bee colonies often face the threat of American foulbrood (AFB), a dangerous disease caused by the Gram-positive bacterium Paenibacillus larvae (P. l.). While the antibiotic Tylosin has been suggested as a treatment, its bacterial resistance necessitates the search for more effective alternatives. This investigation focused on evaluating the potential of bee venom (BV) and silver nanoparticles (Ag NPs) as antibacterial agents against AFB. In vitro treatments were conducted using isolated AFB bacterial samples, with various concentrations of BV and Ag NPs (average size: 25nm) applied individually and in combination. The treatments were administered under both light and dark conditions. The viability of the treatments was assessed by monitoring the lifespans of treated bees and evaluating the treatment's efficiency within bee populations. Promising results were obtained with the use of Ag NPs, which effectively inhibited the progression of AFB. Moreover, the combination of BV and Ag NPs, known as bee venom/silver nanocomposites (BV/Ag NCs), significantly extended the natural lifespan of bees from 27 to 40 days. Notably, oral administration of BV in varying concentrations (1.53, 3.12, and 6.25 mg/mL) through sugary syrup doubled the bees' lifespan compared to the control group. The study established a significant correlation between the concentration of each treatment and the extent of bacterial inhibition. BV/Ag NCs demonstrated 1.4 times greater bactericidal efficiency under photo-stimulation with visible light compared to darkness, suggesting that light exposure enhances the effectiveness of BV/Ag NCs. The combination of BV and Ag NPs demonstrated enhanced antibacterial efficacy and prolonged honeybee lifespan. These results offer insights that can contribute to the development of safer and more efficient antibacterial agents for maintaining honeybee health.

摘要

养蜂业在地方经济中起着至关重要的作用,对其增长有重大贡献。然而,蜜蜂群体经常面临美洲幼虫腐臭病(AFB)的威胁,这是一种由革兰氏阳性细菌幼虫芽孢杆菌(P. l.)引起的危险疾病。虽然抗生素泰乐菌素已被提议作为一种治疗方法,但它的细菌耐药性需要寻找更有效的替代品。本研究集中评估了蜂毒液(BV)和银纳米粒子(Ag NPs)作为抗 AFB 的抗菌剂的潜力。在体外使用分离的 AFB 细菌样本进行了处理,单独和组合使用了不同浓度的 BV 和 Ag NPs(平均尺寸:25nm)。在光和暗条件下进行了处理。通过监测经处理的蜜蜂的寿命并评估处理在蜜蜂种群中的效率来评估处理的生存能力。使用 Ag NPs 获得了有希望的结果,Ag NPs 有效地抑制了 AFB 的进展。此外,BV 和 Ag NPs 的组合,称为蜂毒液/银纳米复合材料(BV/Ag NCs),显著将蜜蜂的自然寿命从 27 天延长至 40 天。值得注意的是,通过含糖糖浆以不同浓度(1.53、3.12 和 6.25mg/mL)口服 BV 将蜜蜂的寿命与对照组相比增加了一倍。该研究建立了每个处理的浓度与细菌抑制程度之间的显著相关性。在可见光的光刺激下,BV/Ag NCs 的杀菌效率比黑暗中高 1.4 倍,这表明光暴露增强了 BV/Ag NCs 的有效性。BV 和 Ag NPs 的组合表现出增强的抗菌功效和延长的蜜蜂寿命。这些结果提供了可以为开发更安全,更有效的抗菌剂以维持蜜蜂健康做出贡献的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce0f/11329661/0762cbc9db94/41598_2024_67515_Fig1_HTML.jpg

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