Nualart Daniela, Muñoz José Luis P, Vargas-Chacoff Luis
Instituto de Ciencias Marinas y Limnológicas, Laboratorio de Fisiología de Peces, Universidad Austral de Chile, Valdivia 5090000, Chile.
Millennium Institute Biodiversity of Antarctic and Subantarctic Ecosystems, BASE, University Austral of Chile, Valdivia 5090000, Chile.
Int J Mol Sci. 2025 Jun 30;26(13):6330. doi: 10.3390/ijms26136330.
Oxytetracycline (OTC) has served as an antibiotic to treat various bacterial infections in fish raised in aquaculture. Nonetheless, administering OTC in overly high doses can lead to adverse side effects in fish and also negatively impact on their surroundings. The objective of this work was to evaluate the expression levels of immune markers such as TLR-1, TLR-2, IκB-α, MyD88, NF-κB, IFN-γ, and IL-6 in intestinal cell primary culture (foregut, midgut, and hindgut) using qRT-PCR, and in addition, to assess the response to different doses of OTC in coho salmon at different times. The expression levels of all genes increased significantly after 1 h on day 1 with high doses of OTC compared with control conditions in all tissues under both approaches ( and ). However, the transcriptional responses decreased to 3, 6, and 12 h and day 3 . In conclusion, the transcriptional responses were differentially modulated by OTC in the three intestinal portions under both experimental conditions. These results demonstrate for the first time in primary cell culture fish that the expression of immune biomarkers in all tissues induces a differential response of these genes, depending on the concentration of OTC and the kinetics of time. This study offers valuable insights that can be applied to enhance aquaculture, determine optimal drug doses, and improve fish health.
土霉素(OTC)一直作为一种抗生素用于治疗水产养殖中鱼类的各种细菌感染。尽管如此,过量施用土霉素会对鱼类产生不良副作用,还会对其周围环境产生负面影响。这项工作的目的是使用qRT-PCR评估肠道细胞原代培养物(前肠、中肠和后肠)中TLR-1、TLR-2、IκB-α、MyD88、NF-κB、IFN-γ和IL-6等免疫标志物的表达水平,此外,评估不同时间点银大麻哈鱼对不同剂量土霉素的反应。与两种方法下的对照条件相比,在第1天用高剂量土霉素处理1小时后,所有组织中所有基因的表达水平均显著增加(和)。然而,转录反应在3、6和12小时以及第3天下降。总之,在两种实验条件下,土霉素对三个肠道部分的转录反应有不同的调节作用。这些结果首次在原代细胞培养的鱼类中表明,所有组织中免疫生物标志物的表达会诱导这些基因产生不同的反应,这取决于土霉素的浓度和时间动力学。本研究提供了有价值的见解,可应用于加强水产养殖、确定最佳药物剂量和改善鱼类健康。