抗寄生虫的
海西定
桡足类
抗菌肽
生物
甲壳素
抗菌剂
微生物学
抗寄生虫药
化学
生物化学
药理学
免疫学
动物
炎症
医学
病理
甲壳动物
壳聚糖
作者
Paula Santana,Camila Arancibia,Laura Tamayo,Juan Pablo Cumillaf,Tanya Román,Constanza Cárdenas,Cinthya Paillan Suarez,Claudio Ãlvarez,Fanny Guzmán
出处
期刊:Pharmaceutics
[Multidisciplinary Digital Publishing Institute]
日期:2024-03-08
卷期号:16 (3): 378-378
被引量:4
标识
DOI:10.3390/pharmaceutics16030378
摘要
Currently, one of the primary challenges in salmon farming is caligidosis, caused by the copepod ectoparasites Caligus spp. The infection process is determined by the copepod’s ability to adhere to the fish skin through the insertion of its chitin-composed filament. In this study, we examined several antimicrobial peptides previously identified in salmonid mucosal secretions, with a primary focus on their potential to bind to chitin as an initial step. The binding capacity to chitin was tested, with hepcidin and piscidin showing positive results. Further assessments involving cytotoxicity in salmonid cells RTgill-W1, SHK-1, RTS-11, and RT-gut indicated that the peptides did not adversely affect cell viability. However, hemolysis assays unveiled the hemolytic capacity of piscidin at lower concentrations, leading to the selection of hepcidin for antiparasitic assays. The results demonstrated that the nauplius II stage of C. rogercresseyi exhibited higher susceptibility to hepcidin treatments, achieving a 50% reduction in parasitic involvement at 50 µM. Utilizing fluorescence and scanning electron microscopy, we observed the localization of hepcidin on the surface of the parasite, inducing significant spherical protuberances along the exoskeleton of C. rogercresseyi. These findings suggest that cysteine-rich AMPs derived from fish mucosa possess the capability to alter the development of the chitin exoskeleton in copepod ectoparasites, making them therapeutic targets to combat recurrent parasitic diseases in salmon farming.
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