| Literature DB >> 33811987 |
Aswani Thekkangil1, Benu George1, S M Udaya Prakash2, T V Suchithra3.
Abstract
An increase in incidences of tinea infections paves the way to discover the novel antifungal drugs from unexplored natural resources. The quality of life in patients with tinea infection may be affected by different factors, including morbidity, length of illness, social and demographic factors. The present investigation explores the functional principle of a bioactive compound isolated from actinomycetes, S. albidoflavus STV1572a by in-silico and in-vitro studies. In continuation of our previous reports on the antidermatophytic potential of S. albidoflavus STV1572a, this study progresses with the in-silico molecular docking study of the seven GC-MS discovered ligands, and six dermatophytic modelled targets. Through virtual screening, it was revealed that a docking score -8.8 between 1-heneicosanol and squalene epoxidase favored partially in understanding the mode of action. Further validation of in-silico study was performed by a sterol quantification assay which confirmed the antidermatophytic mechanism of 1-heneicosanol. Taken together, the evidence from this study suggests that 1-heneicosanol has a potential antidermatophytic compound and can be considered for dermatophytic treatment.Entities:
Keywords: 1-Heneicosanol; Squalene epoxidase; Sterol quantification assay; Streptomyces; T. mentagrophytes; Tinea infection
Year: 2021 PMID: 33811987 DOI: 10.1016/j.micpath.2021.104853
Source DB: PubMed Journal: Microb Pathog ISSN: 0882-4010 Impact factor: 3.738