In vitro bioevaluation and docking study of dihydrosphingosine and ethambutol analogues against sensitive and multi-drug resistant Mycobacterium tuberculosis.

Tuberculosis remains a major public health problem and one of the top ten causes of death worldwide. The alarming increase in multidrug-resistant and extensively resistant variants (MDR, pre-XDR, and XDR) makes the disease more difficult to treat and control. New drugs that act against MDR/XDR strai...

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Bibliographic Details
Authors: Linhares, Leonardo Aquino, Dos Santos Peixoto, Aline, Correia de Sousa, Luanna de Angelis, Lucena Laet, João Paulo, da Silva Santos, Aline Caroline, Alves Pereira, Valeria Rêgo, Carneiro Neves, Maria Madileuza, Ferreira, Luiz Felipe Gomes Rebello, Hernandes, Marcelo Zaldini, de la Vega, Jennifer, Pereira-Neves, Antônio, San Feliciano, Arturo, Olmo, Esther Del, Schindler, Haiana Charifker, Montenegro, Lílian Maria Lapa, dos Santos Peixoto, Aline
Format: article
Status:Published version
Publication Date:2023
Country:España
Institution:Universidad de Salamanca (USAL)
Repository:GREDOS. Repositorio Institucional de la Universidad de Salamanca
OAI Identifier:oai:gredos.usal.es:10366/168756
Online Access:http://hdl.handle.net/10366/168756
Access Level:Embargoed access
Keyword:Antitubercular drugs Dihydrosphingosine analogues Ethambutol Multidrug resistance
Mycobacterium tuberculosis
Antitubercular Agents
Drug Resistance
Ethambutol
Microbial Sensitivity Tests
Tuberculosis
Sphingosine
Humans
Molecular Docking Simulation
humanos
etambutol
esfingosina
resistencia a medicamentos
pruebas de sensibilidad microbiana
antituberculosos
tuberculosis
simulación de acoplamiento molecular
Description
Summary:Tuberculosis remains a major public health problem and one of the top ten causes of death worldwide. The alarming increase in multidrug-resistant and extensively resistant variants (MDR, pre-XDR, and XDR) makes the disease more difficult to treat and control. New drugs that act against MDR/XDR strains are needed for programs to contain this major epidemic. The present study aimed to evaluate new compounds related to dihydro-sphingosine and ethambutol against sensitive and pre-XDR Mycobacterium strains, as well as to characterize the pharmacological activity through in vitro and in silico approaches in mmpL3 protein. Of the 48 compounds analyzed, 11 demonstrated good to moderate activity on sensitive and MDR Mycobacterium tuberculosis (Mtb), with a Minimum Inhibitory Concentration (MIC) ranging from 1.5 to 8 μM. They presented 2 to 14 times greater potency of activity when compared to ethambutol in pre-XDR strain, and demonstrated a selectivity index varying between 2.21 and 82.17. The substance 12b when combined with rifampicin, showed a synergistic effect (FICI = 0.5) on sensitive and MDR Mtb. It has also been shown to have a concentration-dependent intracellular bactericidal effect, and a time-dependent bactericidal effect in M. smegmatis and pre-XDR M. tuberculosis. The binding mode of the compounds in its cavity was identified through molecular docking and using a predicted structural model of mmpL3. Finally, we observed by transmission electron microscopy the induction of damage to the cell wall integrity of M. tuberculosis treated with the substance 12b. With these findings, we demonstrate the potential of a 2-aminoalkanol derivative to be a prototype substance and candidate for further optimization of molecular structure and anti-tubercular activity in preclinical studies.