Priyadarshini Sekaran Kalaivani, Subramani Parasuraman Aiya, Michael Rajamani Dinakaran
P.G. and Research Department of Zoology and Biotechnology, Lady Doak College, Madurai-625002, India.
Centre for Fish Immunology, School of Life Sciences, Vels Institute of Science, Technology and Advanced Studies (VISTAS), VELS University, Chennai - 600117, India.
Open Vet J. 2017;7(2):157-164. doi: 10.4314/ovj.v7i2.13. Epub 2017 Jun 10.
It is well-known that the innate immune mechanisms in fish serve as the first line of defence against wide variety of pathogens. In most of the situations, innate responses get induced and enhanced after the pathogen invasion. It would be interesting to look into the inducibility of various innate immune mechanisms and the level of enhancement after infection with the pathogen. Hence, in the present investigation, modulation of the innate immune responses in the striped snakehead murrel, on experimental challenge with either live virulent or heat killed at a dose of 1x10 CFU (suspended in 0.2 mL PBS) were measured. Most of the non-specific (both humoral and cellular) immune responses tested were substantially induced or enhanced in both the experimental groups in comparison with the unchallenged control group. Significant increase in the lysozyme, total peroxidase, antiprotease and respiratory burst activities were observed after the pathogen challenge. Thus, most of the innate non-specific immune responses are inducible though they are constitutive of fish immune system exhibiting a basal level of activity even in the absence of pathogen challenge.
众所周知,鱼类的先天免疫机制是抵御多种病原体的第一道防线。在大多数情况下,病原体入侵后先天反应会被诱导并增强。研究各种先天免疫机制的诱导性以及感染病原体后的增强水平将是很有趣的。因此,在本研究中,测定了条纹鳢在分别用1x10 CFU(悬浮于0.2 mL PBS中)的活毒或热灭活病原体进行实验性攻击后先天免疫反应的调节情况。与未受攻击的对照组相比,两个实验组中测试的大多数非特异性(体液和细胞)免疫反应都得到了显著诱导或增强。病原体攻击后观察到溶菌酶、总过氧化物酶、抗蛋白酶和呼吸爆发活性显著增加。因此,大多数先天非特异性免疫反应是可诱导的,尽管它们是鱼类免疫系统的组成部分,即使在没有病原体攻击的情况下也表现出基础水平的活性。