Biomedicine & Pharmacotherapy (Oct 2024)

Thiazine-derived compounds in inhibiting efflux pump in Staphylococcus aureus K2068, mepA gene expression, and membrane permeability alteration

  • Priscilla R. Freitas,
  • Ana C.J. de Araújo,
  • Isaac M. Araújo,
  • Ray S. de Almeida,
  • João A.O. Borges,
  • Cícera L.R. Paulo,
  • Cícera D.M. Oliveira-Tintino,
  • Gustavo M. Miranda,
  • José B. Araújo-Neto,
  • Igor J.S. Nascimento,
  • João X. Araújo-Júnior,
  • Julia M.A. Silva,
  • Tereza C.L. Balbino,
  • Edeildo F. Silva-Júnior,
  • Thiago M. Aquino,
  • Francisco J.B. Mendonca-Junior,
  • Emmanuel S. Marinho,
  • Hélcio S. Santos,
  • Clara Mariana Gonçalves Lima,
  • Ahmad J. Obaidullah,
  • Talha Bin Emran,
  • Francisco A.B. Cunha,
  • Irwin R.A. Menezes,
  • Saulo R. Tintino,
  • Henrique D.M. Coutinho

Journal volume & issue
Vol. 179
p. 117291

Abstract

Read online

Staphylococcus aureus is a bacterium responsible for resistance to multiple drugs and the efflux system is widely studied among the resistance mechanisms developed by this species. The present study evaluates the inhibition of the MepA efflux pump by thiadiazine-derived compounds. For this purpose, thiadiazine-derived compounds (IJ-14 to IJ-20) were tested against S. aureus K2068 strains. Microdilution tests were initially conducted to assess the Minimum Inhibitory Concentration (MIC) of the compounds and their efflux pump inhibition activity. In addition, fluorimetry tests were performed using BrEt emission and tests were conducted to inhibit the expression of the mepA gene. This involved comparing the bacterial gene expression with the antibiotic alone to the gene expression after combining compounds (IJ-17 and IJ-20) with the antibiotic. Furthermore, membrane permeability assessment tests and in silico molecular docking tests were performed. It was observed that the IJ17 and IJ20 compounds exhibited direct activity against the tested strain. The IJ17 compound produced significant results in the gene inhibition tests, which was also evidenced through the membrane permeability alteration test. These findings suggest that thiadiazine-derived compounds have promising effects against one of the main resistance mechanisms, with the IJ17 compound presenting observable mechanisms of action.

Keywords