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Antibacterial azole derivatives: Antibacterial activity, cytotoxicity, and in silico mechanistic studies.
Sari, Suat; Avci, Ahmet; Koçak, Ebru; Kart, Didem; Sabuncuoglu, Suna; Dogan, Inci Selin; Özdemir, Zeynep; Bozbey, Irem; Karakurt, Arzu; Saraç, Selma; Dalkara, Sevim.
Afiliação
  • Sari S; Department of Pharmaceutical Chemistry, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
  • Avci A; Department of Pharmaceutical Chemistry, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
  • Koçak E; Department of Pharmaceutical Chemistry, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
  • Kart D; Department of Pharmaceutical Microbiology, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
  • Sabuncuoglu S; Department of Pharmaceutical Toxicology, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
  • Dogan IS; Department of Pharmaceutical Chemistry, Karadeniz Technical University Faculty of Pharmacy, Trabzon, Turkey.
  • Özdemir Z; Department of Pharmaceutical Chemistry, Inönü University Faculty of Pharmacy, Malatya, Turkey.
  • Bozbey I; Department of Pharmaceutical Chemistry, Erzincan Binali Yildirim University Faculty of Pharmacy, Erzincan, Turkey.
  • Karakurt A; Department of Pharmaceutical Chemistry, Inönü University Faculty of Pharmacy, Malatya, Turkey.
  • Saraç S; Department of Pharmaceutical Chemistry, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
  • Dalkara S; Department of Pharmaceutical Chemistry, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.
Drug Dev Res ; 81(8): 1026-1036, 2020 Dec.
Article em En | MEDLINE | ID: mdl-33216362
ABSTRACT
Azole antifungal drugs are commonly used in antifungal chemotherapy. Antibacterial effects of some topical antifungals, such as miconazole and econazole, have lately been revealed, which suggests a promising venue in antimicrobial chemotherapy. In this study, we tested an in-house azole collection with antifungal properties for their antibacterial activity to identify dual-acting hits using the broth microdilution method. The in vitro screen yielded a number of potent derivatives against gram-positive bacteria, Enterococcus faecalis and Staphylococcus aureus. Compound 73's minimum inhibitory concentration (MIC) value less than 1 µg/ml against S. aureus; however, none of the compounds showed noteworthy activity against methicillin-resistant S. aureus (MRSA). All the active compounds were found safe at their MIC values against the healthy fibroblast cells in the in vitro cytotoxicity test. Molecular docking studies of the most active compounds using a set of docking programs with flavohemoglobin (flavoHb) structure, the proposed target of the azole antifungals with antibacterial activity, presented striking similarities regarding the binding modes and interactions between the tested compounds and the antifungal drugs with crystallographic data. In addition to being noncytotoxic, the library was predicted to be drug-like and free of pan-assay interference compounds (PAINS). As a result, the current study revealed several potential azole derivatives with both antifungal and antibacterial activities. Inhibition of bacterial flavoHb was suggested as a possible mechanism of action for the title compounds.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Drug Dev Res Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Turquia

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Drug Dev Res Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Turquia