肠外注射内毒素对鲶鱼免疫血液学反应的影响

S.K. Nayak, N. Jahan, S. Pattnaik
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引用次数: 0

摘要

内毒素是革兰氏阴性菌的外细胞膜脂多糖成分,是导致许多并发症/疾病的因素,在动物许多疾病的病理生理并发症和发病机制中起着重要作用。与对内毒素极其敏感的高等动物不同,鱼类被发现对内毒素休克具有抗性,早期的研究虽然有限,但已经证明了LPS/内毒素对包括鱼类在内的水生动物的病理生理、免疫内分泌和免疫神经系统的影响。本研究通过腹腔注射0.1、0.05和0.01 mg的内毒素,研究了纯内毒素对50 ~ 60 g的刺刺鲶鱼化石免疫血液学参数的影响。结果表明,在0.1 mg的内毒素浓度下,幼鼠可抵抗内毒素而无死亡。低剂量(0.01 mg)内毒素对刺痛鲶鱼的免疫指标无明显影响,0.05 mg内毒素对刺痛鲶鱼的免疫指标有显著影响。不同的血清和免疫参数,如蛋白质、球蛋白、溶菌酶、呼吸爆发活性、髓过氧化物酶活性、自然凝集滴度均显著升高(p <0.01),每条鱼0.05毫克的内毒素剂量。相反,在高剂量(即每条鱼0.1 mg内毒素)时,这些参数大多降低,从而表明内毒素具有免疫抑制作用。对先天免疫调节的研究结果也与嗜水气单胞菌病原体攻击研究结果相吻合,每鱼注射0.1 mg内毒素组死亡率最高,每鱼注射0.05 mg内毒素组死亡率最低。
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Effect of parenteral endotoxin administration on the immuno-haematological responses of catfish, Heteropneustes fossilis

Endotoxin, the outer cell wall membrane lipopolysaccharide component of the Gram-negative bacteria is a factor responsible for a number of complications/disorders and plays important role in the associated with pathophysiological complications and pathogenesis of many diseases in animals. Unlike higher animals which are extremely sensitive to endotoxin, fish are found to be resistant to endotoxic shock and earlier studies though limited have demonstrated the patho-physiological, immuno-endocrinological and immuno-neurological effects of LPS/endotoxin in aquatic animals including fish. Herein in the present investigation, the effect of pure endotoxin on immuno-haematological parameters of stinging catfish, Heteropneustes fossilis ranging from 50–60 g was studied by intraperitoneally injecting 0.1, 0.05 and 0.01 mg endotoxin per fish. H. fossilis yearlings were found to resist the endotoxin concentration up to 0.1 mg without any mortality. While, no change in immune parameters was recorded in stinging catfish injected with low dose of endotoxin (0.01 mg), most of the immune parameters were found to be significantly elevated in catfish injected with 0.05 mg endotoxin. Different serum and immune parameters like protein, globulin, lysozyme, respiratory burst activity, myeloperoxidase activity, natural agglutination titre were found to be significantly high (p < 0.01) at a dose of 0.05 mg endotoxin per fish. On the contrary, most of these parameters were decreased at high dose i.e., 0.1 mg endotoxin per fish, thereby indicating the immuno-suppressive effect of the endotoxin. The findings of the modulation of innate immunity also corroborated with the results of Aeromonas hydrophila pathogen challenge study with highest percent of mortality in group injected with 0.1 mg endotoxin per fish and least percentage in group injected with 0.05 mg endotoxin per fish.

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