Novel Bis-Ammonium Salts of Pyridoxine: Synthesis and Antimicrobial Properties

A series of 108 novel quaternary bis-ammonium pyridoxine derivatives carrying various substituents at the quaternary nitrogen's and acetal carbon was synthesized. Thirteen compounds exhibited antibacterial and antifungal activity (minimum inhibitory concentration (MIC) 0.25-16 µg/mL) comparable...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2020-09, Vol.25 (18), p.4341
Hauptverfasser: Shtyrlin, Nikita V, Pugachev, Mikhail V, Sapozhnikov, Sergey V, Garipov, Marsel R, Vafina, Rusalia M, Grishaev, Denis Yu, Pavelyev, Roman S, Kazakova, Renata R, Agafonova, Mariya N, Iksanova, Alfiya G, Lisovskaya, Svetlana A, Zeldi, Marina I, Krylova, Elena S, Nikitina, Elena V, Sabirova, Alina E, Kayumov, Airat R, Shtyrlin, Yurii G
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:A series of 108 novel quaternary bis-ammonium pyridoxine derivatives carrying various substituents at the quaternary nitrogen's and acetal carbon was synthesized. Thirteen compounds exhibited antibacterial and antifungal activity (minimum inhibitory concentration (MIC) 0.25-16 µg/mL) comparable or superior than miramistin, benzalkonium chloride, and chlorhexidine. A strong correlation between the lipophilicity and antibacterial activity was found. The most active compounds had logP values in the range of 1-3, while compounds with logP > 6 and logP < 0 were almost inactive. All active compounds demonstrated cytotoxicity comparable with miramistin and chlorhexidine on HEK-293 cells and were three-fold less toxic when compared to benzalkonium chloride. The antibacterial activity of leading compound on biofilm-embedded , , or was comparable or even higher than that of the benzalkonium chloride. In vivo was considerably less toxic (LD 1705 mg/kg) than benzalkonium chloride, miramistine, and chlorhexidine at oral administration on CD-1 mice. An aqueous solution of (0.2%) was shown to be comparable to reference drugs efficiency on the rat's skin model. The molecular target of seems to be a cellular membrane as other quaternary ammonium salts. The obtained results make the described quaternary bis-ammonium pyridoxine derivatives promising and lead molecules in the development of the new antiseptics with a broad spectrum of antimicrobial activity.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules25184341