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纳米结构重组蛋白在鲑鱼细胞中的免疫调节证据

Immunomodulation Evidence of Nanostructured Recombinant Proteins in Salmonid Cells.

作者信息

Torrealba Débora, López Daniela, Zelada Patricio, Salinas-Parra Nicolás, Valenzuela-Avilés Paula, Garcia-Fruitós Elena, Arís Anna, Mercado Luis, Altamirano Claudia, Gallardo-Matus José

机构信息

Instituto de Ciencias de la Ingeniería, Universidad de O'Higgins, Avenida Libertador Bernardo O'Higgins 611, Rancagua 2841959, Chile.

Laboratorio de Genética y Genómica Aplicada, Escuela de Ciencias del Mar, Pontificia Universidad Católica de Valparaíso, Avenida Universidad 330, Valparaíso 2373223, Chile.

出版信息

Animals (Basel). 2024 Mar 9;14(6):844. doi: 10.3390/ani14060844.

Abstract

Recent studies have demonstrated that immune-related recombinant proteins can enhance immune function, increasing host survival against infectious diseases in salmonids. This research evaluated inclusion bodies (IBs) of antimicrobial peptides (CAMP and HAMP) and a cytokine (IL1β and TNFα) as potential immunostimulants in farmed salmonids. For this purpose, we produced five IBs (including iRFP as a control), and we evaluated their ability to modulate immune marker gene expression of three IBs in the RTS11 cell line by RT-qPCR. Additionally, we characterized the scale-up of IBs production by comparing two different scale systems. The results showed that CAMP can increase the upregulation of , , , and , HAMP significantly increases the upregulation of , , and , and IL1β significantly upregulated the expression of , , and . A comparison of IL1β production showed that the yield was greater in shake flasks than in bioreactors (39 ± 1.15 mg/L and 14.5 ± 4.08 mg/L), and larger nanoparticles were produced in shake flasks (540 ± 129 nm and 427 ± 134 nm, < 0.0001, respectively). However, compared with its shake flask counterpart, the IL1β produced in a bioreactor has an increased immunomodulatory ability. Further studies are needed to understand the immune response pathways activated by IBs and the optimal production conditions in bioreactors, such as a defined medium, fed-batch production, and mechanical bacterial lysis, to increase yield.

摘要

最近的研究表明,免疫相关重组蛋白可以增强免疫功能,提高鲑科鱼类宿主抵抗传染病的存活率。本研究评估了抗菌肽(CAMP和HAMP)和一种细胞因子(IL1β和TNFα)的包涵体作为养殖鲑科鱼类潜在免疫刺激剂的作用。为此,我们制备了五种包涵体(包括iRFP作为对照),并通过RT-qPCR评估它们调节RTS11细胞系中三种包涵体免疫标记基因表达的能力。此外,我们通过比较两种不同规模系统来表征包涵体生产的放大过程。结果表明,CAMP可增加 、 、 和 的上调,HAMP显著增加 、 和 的上调,IL1β显著上调 、 和 的表达。IL1β产量的比较表明,摇瓶中的产量高于生物反应器(分别为39±1.15 mg/L和14.5±4.08 mg/L),摇瓶中产生的纳米颗粒更大(分别为540±129 nm和427±134 nm,P<0.0001)。然而,与摇瓶中的IL1β相比,生物反应器中产生的IL1β具有增强的免疫调节能力。需要进一步研究以了解包涵体激活的免疫反应途径以及生物反应器中的最佳生产条件,如确定的培养基、补料分批生产和机械细菌裂解,以提高产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1848/10967322/3c6f92e49dfa/animals-14-00844-g001.jpg

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