Tityus stigmurus venom causes genetic damage in blood and testicular cells and affects the number and morphology of gametogenic lineage cells in mice

Scorpion envenomation represents an important health problem in many parts of the world, due to the high number and severity of accidents. Recent studies demonstrated that some species can produce venoms with genetic damage potential. Here, we evaluated whether Tityus stigmurus venom causes genetic...

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Veröffentlicht in:Toxicon (Oxford) 2020-10, Vol.185, p.114-119
Hauptverfasser: Silva, Meykson A., Souza, Talita G., Melo, Maria E.G., Silva, Jeanderson M., Lima, José R., Lira, André F.A., de Aguiar-Júnior, Francisco C.A., Martins, René D., Jorge, Roberta J.B., Chagas, Cristiano A., Teixeira, Valéria W., Teixeira, Álvaro A.C.
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Sprache:eng
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Zusammenfassung:Scorpion envenomation represents an important health problem in many parts of the world, due to the high number and severity of accidents. Recent studies demonstrated that some species can produce venoms with genetic damage potential. Here, we evaluated whether Tityus stigmurus venom causes genetic damage in blood and testicular cells of Swiss mice. We also analyzed the effect of the venom on the number of spermatogenic lineage cells. Five groups of mice received 0.387 mg/kg of the venom, intraperitoneally; one group received saline solution (control group). Blood and testicular cells were collected for comet assay and histological analysis at different times after treatment (1, 2, 6, 12, and 48 h). Blood was also collected 48 h after treatment for the micronucleus test in erythrocytes. Histological analysis was performed by counting cells of the spermatogenic lineages; the nuclear area of elongated spermatocytes was also evaluated. Treatment with the venom induced DNA damage that endured from 1 h to 48 h, as confirmed by the comet assay. The micronucleus test demonstrated that the venom induced mutations in erythrocytes. The number of spermatogonia and rounded spermatids decreased in some groups; the number of elongated spermatids increased, and their nuclear size decreased 1 h after treatment. Genetic damage can be caused directly by the venom, but we suggested that reactive oxygen species that result from inflammatory process caused by the envenomation may have an important role in the DNA damage. Genetic damage and apoptosis may explain the changes in the number of spermatogenic cells. Furthermore, the decrease in nuclear area may result from chromatin loss. Genetic damage in testicular cells, associated with alterations in the number and morphology of spermatogenic cells, can result in reproduction disorders in animals, or humans, stung by T. stigmurus. •Tityus stigmurus venom induces DNA damage in blood and testicular cells of mice.•The venom also induces mutations in blood of mice as seen by micronucleus test.•Number and nuclear morphology of spermatogenic lineage is altered by the venom.•Tityus stigmurus sting may result in reproductive disorders in animals and humans.
ISSN:0041-0101
1879-3150
DOI:10.1016/j.toxicon.2020.07.006