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Modulation and Interaction of Immune-Associated Parameters with Antioxidant in the Immunocytes of Crab Scylla paramamosain Challenged with Lipopolysaccharides

机译:脂多糖对螃蟹Sylla paramamosain免疫细胞中抗氧化剂的免疫相关参数的调节和相互作用

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@@ Invertebrates are dependent on cellular and humoral immune defences against microbial infection. Scylla paramamosain is an important commercial species, but the fundamental knowledge on its immune defense related to the antioxidant and immuneassociated reactions is still lacking. The study was to di.erentiate the responses of immune-associated parameters of haemolymph components in S. Paramamosain when challenged with bacterial lipopolysaccharides (LPSs). The immunostimulating e.ects of LPS in crab by triggering various immune parameters (phagocytosis, lysozyme, antibacterial activity, phenoloxidase, and the generation of superoxide and nitric oxide) were investigated. Results showed that the generation of free radicals, phenoloxidase, lysozyme and antibacterial activities was significantly increased through the exposure periods. Conversely, total hemocyte count and lysosomal membrane stability decreased significantly as the exposure period extended to 96 h. The relationship between the antioxidant enzymes and immune reactions due to LPS was highly significant. In addition, ROS production was positively correlated with antioxidant showing immediate response of antioxidant defense to the oxyradicals generated. Overall, the study indicated that nonspecific immune components in hemocytes of crab showed active response to the LPS stimulation, and their responses suggested that many immune-associated parameters could be modulated and interrelated with the influence of antioxidants in crustaceans.
机译:无脊椎动物依赖于针对微生物感染的细胞和体液免疫防御。拟南芥(Sylla paramamosain)是重要的商业物种,但仍缺乏有关其与抗氧化剂和免疫相关反应有关的免疫防御作用的基本知识。这项研究是为了鉴别在被细菌脂多糖(LPS)攻击时副嗜血沙门氏菌中血淋巴成分的免疫相关参数的反应。研究了通过激发各种免疫参数(吞噬作用,溶菌酶,抗菌活性,酚氧化酶以及超氧化物和一氧化氮的产生)来激发LPS对蟹的免疫刺激作用。结果表明,在暴露期间,自由基,酚氧化酶,溶菌酶和抗菌活性的产生显着增加。相反,随着暴露时间延长至96 h,总血细胞计数和溶酶体膜稳定性显着下降。 LPS引起的抗氧化酶与免疫反应之间的关系非常重要。另外,ROS的产生与抗氧化剂正相关,表明抗氧化剂防御对所产生的氧自由基的立即反应。总体而言,研究表明,蟹血细胞中的非特异性免疫成分对LPS刺激表现出积极的反应,它们的反应表明,许多与免疫相关的参数都可以被调节,并且与甲壳类动物中抗氧化剂的影响相互关联。

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