To evaluate the antinociceptive and anti-inflammatory activities and the toxic effects of Rlhipicephalus microplus saliva for elucidating the modulation mechanism between arthropod saliva and host.Methods:For saliva c...To evaluate the antinociceptive and anti-inflammatory activities and the toxic effects of Rlhipicephalus microplus saliva for elucidating the modulation mechanism between arthropod saliva and host.Methods:For saliva collection,engorged ticks were obtained from a controlled bovine infestation and collected by natural fall.The ticks were fixed and injected pilocarpine 0.2%for induction of salivation.Saliva was collected,lyophilized and stored at-80℃.Cytotoxic activity was assessed by the hemolysis method(25,50,100,200 and 300μg/mL)and MTT cell viability assay(2.5,5,10,20 and 40μg/mL)for 24,48 and 72 h.Anti-inflammatory activity was evaluated using the method of neutrophil migration to the peritoneal cavity of mice at doses of l0,15 and 20 mg/kg;antinociceptive activity was assessed using the acetic acid-induced writhing test,and formalin-induced paw-licking in mice at dose of 15 mg/kg.Results:Saliva did not cause erythrocytes hemolysis at any concentration tested,as well as did not decrease cell viability in the MTT assay.Saliva inhibited neutrophil migration by 87%and 73%at doses of l5 and 20 mg/kg,respectively.In the nociceptive tests,saliva presented analgesic activity of69.96%in the abdominal writhing test,and of 84.41%in the formalin test.The study proves that Rlhipiceplhalus microplus saliva has significant in vivo anti-inflammatory and antinociceptive activities.The data presented herein support the development of further studies to elucidate the active principles of Rhipicephalus microplus saliva and its mechanism of action and,in future,to develop novel anti-inflammatory and analgesic drugs.展开更多
基金supported by FUNDECT(Foundation for Support for the Development of Education,Science and Technology of the State of Mato Grosso do Sul)(FUNDECT/CAPES N°26/2014)Coordination for the Improvement of Higher Level Education Personnel(CAPES)National Council for Scientific and Technological Development(CNPq)
文摘To evaluate the antinociceptive and anti-inflammatory activities and the toxic effects of Rlhipicephalus microplus saliva for elucidating the modulation mechanism between arthropod saliva and host.Methods:For saliva collection,engorged ticks were obtained from a controlled bovine infestation and collected by natural fall.The ticks were fixed and injected pilocarpine 0.2%for induction of salivation.Saliva was collected,lyophilized and stored at-80℃.Cytotoxic activity was assessed by the hemolysis method(25,50,100,200 and 300μg/mL)and MTT cell viability assay(2.5,5,10,20 and 40μg/mL)for 24,48 and 72 h.Anti-inflammatory activity was evaluated using the method of neutrophil migration to the peritoneal cavity of mice at doses of l0,15 and 20 mg/kg;antinociceptive activity was assessed using the acetic acid-induced writhing test,and formalin-induced paw-licking in mice at dose of 15 mg/kg.Results:Saliva did not cause erythrocytes hemolysis at any concentration tested,as well as did not decrease cell viability in the MTT assay.Saliva inhibited neutrophil migration by 87%and 73%at doses of l5 and 20 mg/kg,respectively.In the nociceptive tests,saliva presented analgesic activity of69.96%in the abdominal writhing test,and of 84.41%in the formalin test.The study proves that Rlhipiceplhalus microplus saliva has significant in vivo anti-inflammatory and antinociceptive activities.The data presented herein support the development of further studies to elucidate the active principles of Rhipicephalus microplus saliva and its mechanism of action and,in future,to develop novel anti-inflammatory and analgesic drugs.