Study on the synthesis and structure-activity relationship of 1,2,3-triazoles against toxic activities of Bothrops jararaca venom

Z Naturforsch C J Biosci. 2022 Jun 29;77(11-12):459-471. doi: 10.1515/znc-2022-0010. Print 2022 Nov 25.

Abstract

Snakebite envenoming is a health concern and has been a neglected tropical disease since 2017, according to the World Health Organization. In this study, we evaluated the ability of ten 1,2,3-triazole derivatives AM001 to AM010 to inhibit pertinent in vitro (coagulant, hemolytic, and proteolytic) and in vivo (hemorrhagic, edematogenic, and lethal) activities of Bothrops jararaca venom. The derivatives were synthesized, and had their molecular structures fully characterized by CHN element analysis, Fourier-transform infrared spectroscopy and Nuclear magnetic resonance. The derivatives were incubated with the B. jararaca venom (incubation protocol) or administered before (prevention protocol) or after (treatment protocol) the injection of B. jararaca venom into the animals. Briefly, the derivatives were able to inhibit the main toxic effects triggered by B. jararaca venom, though with varying efficacies, and they were devoid of toxicity through in vivo, in silico or in vitro analyses. However, it seemed that the derivatives AM006 or AM010 inhibited more efficiently hemorrhage or lethality, respectively. The derivatives were nontoxic. Therefore, the 1,2,3-triazole derivatives may be useful as an adjuvant to more efficiently treat the local toxic effects caused by B. jararaca envenoming.

Keywords: Bothrops jararaca; 1,2,3-triazole derivatives; antivenom; medicinal chemistry; snake venom.

MeSH terms

  • Animals
  • Antivenins / pharmacology
  • Bothrops*
  • Crotalid Venoms* / chemistry
  • Hemorrhage
  • Structure-Activity Relationship
  • Triazoles

Substances

  • Crotalid Venoms
  • Antivenins
  • Triazoles