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Title

Synthesis, biological evaluations, and in silico assessments of phenylamino quinazolinones as tyrosinase inhibitors.

Authors

Moghadam Farid, Sara; Moradi Dehaghi, Shahram; Iraji, Aida; Mahdavi, Mohammad; Saeedi, Mina

Abstract

A series of novel phenylamino quinazolinone derivatives were designed and synthesized as potential tyrosinase inhibitors. Among these compounds, 9r emerged as the most potent derivative, exhibiting IC50 values of 17.02 ± 1.66 µM, compared to kojic acid as the positive control with an IC50 value of 27.56 ± 1.27 µM. Antioxidant assessment of 9r compounds showed 24.67% inhibition at 100 µM. Molecular docking studies of these derivatives were conducted, revealing their proper fitting within the enzyme's active site. Additionally, density functional theory analysis was performed on the potent derivatives, indicating their stability and reactivity. Notably, the highest values of the energy gap were observed in 9r and 9s derivatives, underscoring their potential efficacy. Further kinetic studies of compound 9r, identified as the most potent derivative, demonstrated a competitive mode of inhibition with a Ki value of 14.87 µM. Molecular dynamics simulations of the 9r-tyrosinase complex revealed stability over time, with a reduction in critical residual fluctuation during the simulation. Overall, these findings contribute to a deeper understanding of the potential therapeutic value of these derivatives as tyrosinase inhibitors.

Subjects

MOLECULAR dynamics; BINDING sites; DENSITY functional theory; QUINAZOLINONES; BAND gaps; PHENOL oxidase

Publication

Scientific Reports, 2025, Vol 14, Issue 1, p1

ISSN

2045-2322

Publication type

Academic Journal

DOI

10.1038/s41598-024-81328-8

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