4.4 Article

Local envenomation caused by a bioactive peptide fraction of Bothrops jararaca snake venom induces leukocyte influx in the lung and changes in pulmonary mechanics

Journal

TOXICON
Volume 207, Issue -, Pages 52-59

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.toxicon.2022.01.001

Keywords

Bothrops jararaca; FT-IR spectroscopy; Lung inflammation; Peptide fraction; Pulmonary mechanic; Snake venom

Funding

  1. State of S ~ao Paulo Research Foundation (FAPESP)
  2. Coordination for the Improvement of Higher Education Personnel (CAPES) [001]

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This study investigated the impact of low molecular weight peptides in the venom of Bothrops jararaca snake on lung mechanics and inflammation in mice. The results showed that both Bj-CV and Bj-PF injections led to changes in lung function and increased muscle and pulmonary inflammation.
The crude venom of the Bothrops jararaca snake (Bj-CV) is a complex mixture of biologically active proteins that includes a variety of peptides in the low molecular weight fraction (Bj-PF). We investigated how an intramuscular injection of Bj-CV (1.2 mg kg(-1)) and Bj-PF (0.24 mg kg(-1)) influenced lung mechanics and lung and muscle inflammation in male Swiss mice 15 min, 1, 6, and 24 h after inoculation. Pressure dissipation against lung resistive components (delta P1) rose significantly from 1 to 24 h after Bj-CV and 6-24 h after Bj-PF inoculation. Both Bj-CV and Bj-PF increased the total pressure variation of the lung (delta P-tot) 24 h after injection. Lung static elastance increased significantly after injection in all time periods investigated by Bj-CV and from 6 to 24 h by Bj-PF. Lung static elastance increased significantly after injection in all time periods investigated by Bj-CV and from 6 to 24 h by Bj-PF. Furthermore, intramuscular inoculation of Bj-CV and Bj-PF resulted in an increase in muscle and pulmonary inflammation, as evidenced by an increase in leukocyte influx when compared to the control group. Finally, both Bj-CV and Bj-PF cause acute lung injury, as shown by pulmonary inflammation and decreased lung mechanics. Furthermore, the fact that Bj-PF produces mechanical alterations in the lungs and muscular inflammation implies that non-enzymatic compounds can cause inflammation.

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