Gill and head kidney antioxidant processes and innate immune system responses of yellow perch (Perca flavescens) exposed to different contaminants in the St. Lawrence River, Canada

2009 ◽  
Vol 407 (3) ◽  
pp. 1055-1064 ◽  
Author(s):  
C DAUTREMEPUITS ◽  
D MARCOGLIESE ◽  
A GENDRON ◽  
M FOURNIER
2012 ◽  
Vol 214 (3) ◽  
pp. 409-419 ◽  
Author(s):  
Rebeca Martinez ◽  
Kenia Ubieta ◽  
Fidel Herrera ◽  
Alina Forellat ◽  
Reynold Morales ◽  
...  

In teleosts fish, secretion of GH is regulated by several hypothalamic factors that are influenced by the physiological state of the animal. There is an interaction between immune and endocrine systems through hormones and cytokines. GH in fish is involved in many physiological processes that are not overtly growth related, such as saltwater osmoregulation, antifreeze synthesis, and the regulation of sexual maturation and immune functions. This study was conducted to characterize a decapeptide compound A233 (GKFDLSPEHQ) designed by molecular modeling to evaluate its function as a GH secretagogue (GHS). In pituitary cell culture, the peptide A233 induces GH secretion and it is also able to increase superoxide production in tilapia head–kidney leukocyte cultures. This effect is blocked by preincubation with the GHS receptor antagonist [d-Lys3]-GHRP6. Immunoneutralization of GH by addition of anti-tilapia GH monoclonal antibody blocked the stimulatory effect of A233 on superoxide production. These experiments propose a GH-mediated mechanism for the action of A233. The in vivo biological action of the decapeptide was also demonstrated for growth stimulation in goldfish and tilapia larvae (P<0.001). Superoxide dismutase levels, antiprotease activity, and lectin titer were enhanced in tilapia larvae treated with this novel molecule. The decapeptide A233 designed by molecular modeling is able to function as a GHS in teleosts and enhance parameters of the innate immune system in the fish larvae.


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