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半胱胺可改善金头鲷的生长和 GH/IGF 轴:和方法。

Cysteamine improves growth and the GH/IGF axis in gilthead sea bream (): and approaches.

机构信息

Department of Cell Biology, Physiology and Immunology, Faculty of Biology, Universitat de Barcelona, Barcelona, Spain.

Skretting Aquaculture Research Centre, Stavanger, Norway.

出版信息

Front Endocrinol (Lausanne). 2023 Jul 20;14:1211470. doi: 10.3389/fendo.2023.1211470. eCollection 2023.

Abstract

Aquaculture is the fastest-growing food production sector and nowadays provides more food than extractive fishing. Studies focused on the understanding of how teleost growth is regulated are essential to improve fish production. Cysteamine (CSH) is a novel feed additive that can improve growth through the modulation of the GH/IGF axis; however, the underlying mechanisms and the interaction between tissues are not well understood. This study aimed to investigate the effects of CSH inclusion in diets at 1.65 g/kg of feed for 9 weeks and 1.65 g/kg or 3.3 g/kg for 9 weeks more, on growth performance and the GH/IGF-1 axis in plasma, liver, stomach, and white muscle in gilthead sea bream () fingerlings (1.8 ± 0.03 g) and juveniles (14.46 ± 0.68 g). Additionally, the effects of CSH stimulation in primary cultured muscle cells for 4 days on cell viability and GH/IGF axis relative gene expression were evaluated. Results showed that CSH-1.65 improved growth performance by 16% and 26.7% after 9 and 18 weeks, respectively, while CSH-3.3 improved 32.3% after 18 weeks compared to control diet (0 g/kg). However, no significant differences were found between both experimental doses. CSH reduced the plasma levels of GH after 18 weeks and increased the IGF-1 ones after 9 and 18 weeks. Gene expression analysis revealed a significant upregulation of the , different splice variants, and the downregulation of the and , depending on the tissue and dose. Myocytes stimulated with 200 µM of CSH showed higher cell viability and mRNA levels of , , and compared to control (0 µM) in a similar way to white muscle. Overall, CSH improves growth and modulates the GH/IGF-1 axis and toward an anabolic status through different synergic ways, revealing CSH as a feasible candidate to be included in fish feed.

摘要

水产养殖是增长最快的食品生产部门,如今提供的食物超过了捕捞渔业。研究鱼类生长调控机制对于提高鱼类产量至关重要。半胱胺(CSH)是一种新型饲料添加剂,可通过调节 GH/IGF 轴来促进生长;然而,其潜在机制和组织间的相互作用尚不清楚。本研究旨在探讨在饲料中添加 1.65 g/kg 的 CSH 9 周,以及再添加 1.65 g/kg 或 3.3 g/kg 的 CSH 9 周对生长性能和 GH/IGF-1 轴的影响在金头鲷幼鱼(1.8 ± 0.03 g)和幼鱼(14.46 ± 0.68 g)的血浆、肝脏、胃和白肌中。此外,还评估了 CSH 刺激原代培养肌肉细胞 4 天对细胞活力和 GH/IGF 轴相对基因表达的影响。结果表明,CSH-1.65 在 9 周和 18 周后分别使生长性能提高了 16%和 26.7%,而 CSH-3.3 在 18 周后比对照组(0 g/kg)提高了 32.3%。然而,两种实验剂量之间没有显著差异。CSH 在 18 周后降低了血浆 GH 水平,在 9 周和 18 周后增加了 IGF-1 水平。基因表达分析显示,不同组织和剂量下, 、不同剪接变体 、 和 的表达显著上调, 和 的表达下调。用 200 μM 的 CSH 刺激肌细胞,与对照组(0 μM)相比,细胞活力和 、 、 和 的 mRNA 水平更高,方式类似于白肌。总之,CSH 通过不同的协同方式改善生长并调节 GH/IGF-1 轴,使其向合成代谢状态转变,表明 CSH 是一种可行的候选物,可以添加到鱼类饲料中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5acc/10400459/18765677d0c6/fendo-14-1211470-g001.jpg

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