Investigation of the inhibitory potential of secondary metabolites isolated from Fernandoa adenophylla against Beta-glucuronidase via molecular docking and molecular dynamics simulation studies.
basic_science · Level V
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- Record sourced from PubMed, PMID 40408389.
- Also identified by DOI 10.1371/journal.pone.0324100 and PMC identifier 12101693.
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Abstract
Elevated β-glucuronidase activity is associated with the production of toxic metabolites that contribute to tumor development and other diseases. Inhibiting this enzyme may offer therapeutic potential, including the prevention of colonic carcinogenesis. This study investigates the antidiabetic potential of metabolites derived from Fernandoa adenophylla, using β-glucuronidase as a model enzyme linked to hyperglycemia. Both Escherichia coli and human isoforms of β-glucuronidase were evaluated. Among the tested compounds, AA and DD exhibited the most significant inhibitory activity against the E. coli isoenzyme, with inhibition rates of 85.2% (IC₅₀ = 12.3 µM) and 82.6% (IC₅₀ = 8.2 µM), respectively. Against the human isoenzyme, compounds DD and CC showed the highest inhibition, with 92.6% (IC₅₀ = 28.2 µM) and 90.4% (IC₅₀ = 8.9 µM), respectively. These findings were further supported by molecular docking and molecular dynamics simulations. So, these results highlight the potential of F. adenophylla metabolites as promising candidates for developing novel therapeutic agents targeting β-glucuronidase.
Medical subject headings
- Glucuronidase
- Molecular Docking Simulation
- Molecular Dynamics Simulation
- Plant Extracts
- Enzyme Inhibitors