4.6 Article

Benzoic Acid Derivatives as Prodrugs for the Treatment of Tuberculosis

期刊

PHARMACEUTICALS
卷 15, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/ph15091118

关键词

benzoates; nitrobenzoates; tuberculosis; prodrugs; esterases; mycobacteria

资金

  1. Fundacao para a Ciencia e Tecnologia (FCT) [PTDC/SAUINF/28080/2017, EXPL/SAU-INF/1097/2021]
  2. FCT (ImedULisboa) [UIDB/04138/2020, UIDP/04138/2020]

向作者/读者索取更多资源

One interesting approach to fight tuberculosis is the use of prodrugs with improved biological activities. The study synthesized a library of benzoates with different electron withdrawing groups and tested their activity against mycobacteria. The results showed that the phenyl and hexyl esters presented higher activity than the corresponding free acids, with the dinitrobenzoates showing very interesting antitubercular activity.
One interesting approach to fight tuberculosis is the use of prodrugs that often have shown improved biological activities over drugs with poor absorption or difficulty to cross membranes. Previous studies demonstrate that weak acids such as benzoic acid, present antimycobacterial activity. Moreover, esters of those acids revealed to be a viable alternative since they may diffuse more easily through the cell membranes. Previously we showed that mycobacteria can easily activate benzoic acid esters by conversion to the corresponding acid. Since Zhang postulated that the activity of the acids can be dependent on their pKa, we set up to synthesize a library of benzoates with different electron withdrawing groups (4-chloro, 2,6-dichloro, 3,5-dichloro, 4-nitro, and 3,5 dinitro), to modulate pKa of the liberated acid and different alkoxy substituents (propyl, hexyl, and phenyl) to modulate their lipophilicity, and tested the activity of the esters and the corresponding free acids against mycobacteria. We also studied the activation of the esters by mycobacterial enzymes and the stability of the compounds in buffer and plasma. We concluded that all the benzoates in our study can be activated by mycobacterial enzymes and that the phenyl and hexyl esters presented higher activity than the corresponding free acids, with the nitrobenzoates, and especially the dinitrobenzoates, showing very interesting antitubercular activity that deserve further exploration. Our results did not show a correlation between the activity and the pKa of the acids.

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