Álvarez Claudio Andrés, Acosta Félix, Montero Daniel, Guzmán Fanny, Torres Elisa, Vega Belinda, Mercado Luis
Grupo de Marcadores Inmunológicos, Laboratorio de Genética e Inmunología Molecular, Instituto de Biología, Pontificia Universidad Católica de Valparaíso, Valparaíso, Chile; Núcleo Biotecnológico de Curauma (NBC), Pontificia Universidad Católica de Valparaíso, Valparaíso, Chile; Programa de Doctorado en Biotecnología, Universidad Federico Santa María, Pontificia Universidad Católica de Valparaíso, Valparaíso, Chile.
Grupo de Investigación en Acuicultura (GIA), Instituto Ecoaqua, Universidad de Las Palmas de Gran Canaria, PCTM, Spain.
Fish Shellfish Immunol. 2016 Aug;55:662-70. doi: 10.1016/j.fsi.2016.06.035. Epub 2016 Jun 29.
The generation of a variety of new therapeutic agents to control and reduce the effects of pathogen in aquaculture is urgently needed. The antimicrobial peptides (AMPs) are one of the major components of the innate defenses and typically have broad-spectrum antimicrobial activity. However, absorption and distributions of exogenous AMPs for therapeutics application on farmed fish species need to be studied. Previous studies in our laboratory have shown the properties of hepcidin as an effective antimicrobial peptide produced in fish in response to LPS and iron. Therefore, we decided to investigate the antimicrobial activity of four synthetic variants of hepcidin against Vibrio anguillarum in vitro, and using the more effective peptide we demonstrated the pathogen's ability to protect against the infection in European Sea bass. Additionally the uptake of this peptide after ip injection was demonstrated, reaching its distribution organs such as intestine, head kidney, spleen and liver. The synthetic peptide did not show cytotoxic effects and significantly reduced the accumulated mortalities percentage (23.5%) compared to the European Sea bass control (72.5%) at day 21. In conclusion, synthetic hepcidin shows antimicrobial activity against V. anguillarum and the in vivo experiments suggest that synthetic hepcidin was distributed trough the different organs in the fish. Thus, synthetic hepcidin antimicrobial peptide could have high potential for therapeutic application in farmed fish species.
迫切需要研发各种新型治疗剂来控制和减轻水产养殖中病原体的影响。抗菌肽(AMPs)是先天防御的主要组成部分之一,通常具有广谱抗菌活性。然而,用于养殖鱼类治疗应用的外源性抗菌肽的吸收和分布需要进行研究。我们实验室之前的研究表明,铁调素作为鱼类体内响应脂多糖(LPS)和铁产生的一种有效抗菌肽的特性。因此,我们决定研究铁调素的四种合成变体对鳗弧菌的体外抗菌活性,并使用更有效的肽来证明其对欧洲海鲈感染的保护能力。此外,还证明了腹腔注射后该肽的摄取情况,它能到达肠道、头肾、脾脏和肝脏等分布器官。该合成肽未显示出细胞毒性作用,与欧洲海鲈对照组(72.5%)相比,在第21天时显著降低了累积死亡率百分比(23.5%)。总之,合成铁调素对鳗弧菌具有抗菌活性,体内实验表明合成铁调素在鱼体内通过不同器官进行分布。因此,合成铁调素抗菌肽在养殖鱼类的治疗应用中具有很高的潜力。