Departamento de Biología, Laboratorio de Metagenómica Bacteriana, Facultad de Química y Biología, Universidad de Santiago de Chile, Santiago, Chile.
Consorcio Tecnológico de Sanidad Acuícola, Ictio Biotechnologies S.A., Santiago, Chile.
Front Immunol. 2021 Jun 25;12:696803. doi: 10.3389/fimmu.2021.696803. eCollection 2021.
Lactic acid bacteria are a powerful vehicle for releasing of cytokines and immunostimulant peptides at the gastrointestinal level after oral administration. However, its therapeutic application against pathogens that affect rainbow trout and Atlantic salmon has been little explored. Type II interferon in Atlantic salmon activates the antiviral response, protecting against viral infection, but its role against bacterial infection has not been tested In this work, through the design of a recombinant lactic acid bacterium capable of producing Interferon gamma from Atlantic salmon, we explore its role against bacterial infection and the ability to stimulate systemic immune response after oral administration of the recombinant probiotic. Recombinant interferon was active , mainly stimulating IL-6 expression in SHK-1 cells. , oral administration of the recombinant probiotic produced an increase in IL-6, IFNγ and IL-12 in the spleen and kidney, in addition to stimulating the activity of lysozyme in serum. The challenge trials indicated that the administration of the IFNγ-producing probiotic doubled the survival in fish infected with . In conclusion, our results showed that the oral administration of lactic acid bacteria producing IFNγ managed to stimulate the immune response at a systemic level, conferring protection against pathogens, showing a biotechnological potential for its application in aquaculture.
乳酸菌是一种强大的载体,可在口服后在胃肠道水平释放细胞因子和免疫刺激肽。然而,其针对影响虹鳟鱼和大西洋鲑的病原体的治疗应用尚未得到充分探索。大西洋鲑的 II 型干扰素激活抗病毒反应,可预防病毒感染,但尚未测试其针对细菌感染的作用。在这项工作中,我们通过设计一种能够从大西洋鲑鱼中产生γ干扰素的重组乳酸菌,探索其针对细菌感染的作用,以及口服重组益生菌后刺激全身免疫反应的能力。重组干扰素具有活性,主要刺激 SHK-1 细胞中 IL-6 的表达。口服重组益生菌可增加脾脏和肾脏中的 IL-6、IFNγ和 IL-12,此外还可刺激血清中溶菌酶的活性。攻毒试验表明,给予产生 IFNγ的益生菌可使感染的鱼类的存活率提高一倍。总之,我们的结果表明,口服产生 IFNγ的乳酸菌能够在全身水平刺激免疫反应,对病原体提供保护,显示出其在水产养殖中的应用具有生物技术潜力。