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评估从红色海藻爱尔兰苔藓chondrus crispus 中提取的硫酸多糖对贻贝mytilus spp. 的免疫刺激活性的影响。

Assessment of the effects of sulfated polysaccharides extracted from the red seaweed Irish moss Chondrus crispus on the immune-stimulant activity in mussels Mytilus spp.

机构信息

Department of Anatomy, Faculty of Medicine, Khon Kaen University, Khon Kaen, Thailand; Department of Anatomy, Faculty of Science, Mahidol University, Rama 6th Road, Ratchathewi, Bangkok, Thailand.

Aquaculture and Fisheries Development Centre, School of Biological, Earth and Environmental Science, University College Cork, The Cooperage, Distillery Fields, North Mall, Cork, Ireland.

出版信息

Fish Shellfish Immunol. 2018 Apr;75:284-290. doi: 10.1016/j.fsi.2018.02.014. Epub 2018 Feb 10.

Abstract

Seaweeds contain a number of health enhancing and antimicrobial bioactive compounds including sulfated polysaccharides (SP). In the present study, SP extracted from a European red seaweed Irish moss Chondrus crispus was chemically analyzed, SP content extracted and the immune-response effect on wild Irish mussels Mytilus spp. investigated for the first time. A high percent yield of SP was extracted from C. crispus and the immune-stimulant activity of SP was assessed in a laboratory trial with mussels exposed to three different treatments of low (10 μg mL), medium (20 μg mL) and high (50 μg mL) SP dose concentrations and a control mussel group with no exposure to SP. An initial mussel sample was processed prior to the trial commencing and mussels were subsequently sampled on Days 1, 2, 3, 4, 7, and 10 post SP exposure. Both cell, humoral and immune related gene responses including haemocyte cell viability, haemocyte counts, lysozyme activity and expression of immune related genes (defensin, mytimycin and lysozyme mRNA) were assessed. No mussel mortalities were observed in either the treated or non-treated groups. Mussels exposed with SP showed an increase in haemocyte cell viability and the total number of haemocytes compared to control mussels. Lysozyme activity was also higher in treated mussels. Additionally, up-regulated expression of defensin, mytimycin and lysozyme mRNA was observed in SP treated mussels shortly after exposure (on Days 1, 2, and 3) to SP. These results indicate that a high quality yield of SP can be readily extracted from C. crispus and more importantly based on the animal model used in this study, SP extracted from C. crispus can rapidly induce health enhancing activities in Mytilus spp. at a cellular, humoral and molecular level and with a prolonged effect up to ten days post treatment.

摘要

海藻含有许多增强健康和具有抗菌活性的生物化合物,包括硫酸多糖 (SP)。在本研究中,首次对从欧洲红海藻爱尔兰苔藓 Chondrus crispus 中提取的 SP 进行了化学分析、提取 SP 含量,并研究了其对野生爱尔兰贻贝 Mytilus spp. 的免疫反应作用。从 C. crispus 中提取了高比例的 SP,并用实验室试验评估了 SP 的免疫刺激活性,贻贝暴露于三种不同剂量浓度的低 (10μg/mL)、中 (20μg/mL) 和高 (50μg/mL) SP 处理以及未暴露于 SP 的对照组贻贝。在试验开始前处理了初始贻贝样本,随后在 SP 暴露后的第 1、2、3、4、7 和 10 天对贻贝进行采样。评估了细胞、体液和免疫相关基因的反应,包括血细胞活力、血细胞计数、溶菌酶活性以及免疫相关基因(防御素、mytimycins 和溶菌酶 mRNA)的表达。在处理组或未处理组中均未观察到贻贝死亡。与对照组贻贝相比,暴露于 SP 的贻贝的血细胞活力和总血细胞数增加。处理贻贝的溶菌酶活性也更高。此外,在 SP 处理贻贝中,在暴露于 SP 后不久(第 1、2 和 3 天)观察到防御素、mytimycins 和溶菌酶 mRNA 的表达上调。这些结果表明,从 C. crispus 中可以很容易地提取出高质量的 SP,更重要的是,基于本研究中使用的动物模型,从 C. crispus 中提取的 SP 可以在细胞、体液和分子水平上迅速诱导 Mytilus spp. 的健康增强活性,并在治疗后长达十天的时间内产生持久的效果。

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