Novel Organic Salts Based on Mefloquine: Synthesis, Solubility, Permeability, and In Vitro Activity against Mycobacterium tuberculosis

Molecules. 2022 Aug 13;27(16):5167. doi: 10.3390/molecules27165167.

Abstract

The development of novel pharmaceutical tools to efficiently tackle tuberculosis is the order of the day due to the rapid development of resistant strains of Mycobacterium tuberculosis. Herein, we report novel potential formulations of a repurposed drug, the antimalarial mefloquine (MFL), which was combined with organic anions as chemical adjuvants. Eight mefloquine organic salts were obtained by ion metathesis reaction between mefloquine hydrochloride ([MFLH][Cl]) and several organic acid sodium salts in high yields. One of the salts, mefloquine mesylate ([MFLH][MsO]), presented increased water solubility in comparison with [MFLH][Cl]. Moreover, all salts with the exception of mefloquine docusate ([MFLH][AOT]) showed improved permeability and diffusion through synthetic membranes. Finally, in vitro activity studies against Mycobacterium tuberculosis revealed that these ionic formulations exhibited up to 1.5-times lower MIC values when compared with [MFLH][Cl], particularly mefloquine camphorsulfonates ([MFLH][(1R)-CSA], [MFLH][(1S)-CSA]) and mefloquine HEPES ([MFLH][HEPES]).

Keywords: API-OSILs; ionic liquids; mefloquine; polymorphism; tuberculosis.

MeSH terms

  • Antimalarials* / pharmacology
  • HEPES
  • Mefloquine / pharmacology
  • Mycobacterium tuberculosis*
  • Permeability
  • Salts
  • Solubility

Substances

  • Antimalarials
  • Salts
  • HEPES
  • Mefloquine

Grants and funding

This work was supported by FCT-MCTES (PTDC/QUI-QOR/32406/2017, PEst-C/LA0006/2013, RECI/BBBBQB/0230/2012) and by the Associate Laboratory for Green Chemistry-LAQV (FCT-MCTES UIDB/50006/2020 and UIDP/50006/2020). The NMR spectrometers are part of the National NMR Network (PTNMR) and are partially supported by Infrastructure Project N° 022161 (co-financed by FEDER through COMPETE 2020, POCI, PORL, and FCT through PIDDAC).