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2-脱氧-D-葡萄糖对真鲷(Sparus aurata L.)免疫系统的影响。

Effects of 2-deoxy-D-glucose on the immune system of seabream (Sparus aurata L.).

机构信息

Fish Innate Immune System Group, Department of Cell Biology and Histology, Faculty of Biology, University of Murcia, 30100 Murcia, Spain.

出版信息

Fish Shellfish Immunol. 2011 Feb;30(2):592-9. doi: 10.1016/j.fsi.2010.12.003. Epub 2010 Dec 16.

Abstract

Stressful situations are a major problem in aquaculture because they affect the immune system. 2-Deoxy-D-glucose (2-DG) is a derivative of a glucose analogue that reduces the availability of energy, thereby inhibiting cell metabolism so that it is unable to enter the glycolysis pathway. In this paper, 2-DG has been administered in order to study if the immune function is compromised during metabolic stress. Blood glucose level was measured as an indicator of the inhibition of glycolysis, and the effects of intraperitoneal administration of 2-DG on the main parameters of the humoral (complement, IgM levels and peroxidase activity in blood plasma) and cellular (respiratory burst, intracellular peroxidase level and phagocytosis activity) immune parameters of gilthead seabream (Sparus aurata, L) were evaluated. Furthermore, the expression levels of immune-associated genes (CSF-1R, NCCRP-1, Hep, TCR-β, IgM(H), MHC-IIα, C3 and IL-1β) were analyzed by real-time PCR in head-kidney. A total of 5 intraperitoneal injections were performed at 48 h intervals. Three experimental groups were established: a control group injected with phosphate buffer saline, group 2-DG 500 and group 2-DG 750 injected with 500 mg kg⁻¹ and 750 mg kg⁻¹ 2-DG, respectively (N=15). After the third and fourth injection, some specimens of both DG-treated groups died. Following the first and third injection, the blood glucose levels of both 2-DG treated groups increased to a statistically significant extent with respect to the control group. While the humoral immune parameters were not significantly affected as a consequence of 2-DG administration, the cellular activities of leucocytes were. The injection of 500 mg kg⁻¹ 2-DG provoked up- or down-regulation of the immune-relevant genes analyzed, while the injection of 750 mg kg⁻¹ always caused down-regulation of these genes. The results suggest that 2-DG provokes metabolic stress, which reduces the activities carried out by immune cells (leucocytes) and induces down-regulation of the immune-relevant genes analyzed when the energy available to the cell decreases.

摘要

应激是水产养殖中的一个主要问题,因为它会影响免疫系统。2-脱氧-D-葡萄糖(2-DG)是葡萄糖类似物的衍生物,它会降低能量的可用性,从而抑制细胞代谢,使其无法进入糖酵解途径。在本文中,我们使用 2-DG 来研究代谢应激期间免疫功能是否受到损害。血糖水平被用作糖酵解抑制的指标,并且评估了腹腔内注射 2-DG 对真鲷(Sparus aurata,L)体液(补体、IgM 水平和血浆过氧化物酶活性)和细胞(呼吸爆发、细胞内过氧化物酶水平和吞噬作用活性)免疫参数的主要参数的影响。此外,通过实时 PCR 分析了头肾中与免疫相关的基因(CSF-1R、NCCRP-1、Hep、TCR-β、IgM(H)、MHC-IIα、C3 和 IL-1β)的表达水平。总共进行了 5 次腹腔内注射,间隔 48 小时。建立了 3 个实验组:对照组注射磷酸盐缓冲盐水,2-DG500 组和 2-DG750 组分别注射 500mg/kg 和 750mg/kg 2-DG(N=15)。在第三次和第四次注射后,一些 DG 处理组的标本死亡。在第一次和第三次注射后,与对照组相比,两组 2-DG 处理组的血糖水平均显著升高。虽然 2-DG 给药并未显著影响体液免疫参数,但白细胞的细胞活性受到影响。500mg/kg 2-DG 的注射引起了所分析的免疫相关基因的上调或下调,而 750mg/kg 2-DG 的注射总是导致这些基因的下调。结果表明,2-DG 引起代谢应激,从而降低了免疫细胞(白细胞)所进行的活性,并且当细胞中的可用能量减少时,诱导所分析的免疫相关基因的下调。

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