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Natural phytoalexins inspired the discovery of new biphenyls as potent antifungal agents for treatment of invasive fungal infections. | LitMetric

AI Article Synopsis

  • - A series of new biphenyl compounds were created from natural biphenyl phytoalexins to find effective antifungal agents against four invasive fungi.
  • - Compounds 23a, 23e, and 23h showed strong antifungal activity, outperforming the lead compound noraucuparin by up to 256 times, and were as effective as the well-known drug amphotericin B.
  • - Compound 23h not only demonstrated improved fungicidal activity by disrupting fungal cell membranes but also had low toxicity to human cells and promising pharmacokinetic properties, highlighting the potential of natural sources in developing new antifungal treatments.

Article Abstract

With the aim of discovering novel and effective antifungal agents derived from natural sources, a series of new biphenyls based on natural biphenyl phytoalexins were designed, synthesized and evaluated for their antifungal activities against four invasive fungi. By modifying the two benzene rings of noraucuparin, a well-known biphenyl phytoantitoxin, some promising compounds with remarkable antifungal activity were discovered. Notably, compounds 23a, 23e and 23h exhibited potent activities and a broad antifungal spectrum with low MICs of 0.25-16 μg/mL, which were 8-256-fold more potent than that of the lead compound noraucuparin. Particularly, they displayed comparable potency to the positive control amphotericin B against Cryptococcus neoformans. Some interesting structure-activity relationships have also been discussed. Preliminary mechanism studies revealed that compound 23h might achieve its rapid fungicidal activity by disrupting the fungal cell membrane. Moreover, compound 23h exhibited significant inhibition against some virulence factors of Cryptococcus neoformans, low toxicity to normal human cells, as well as favorable pharmacokinetic and drug-like properties. The above results evidenced that the development of new antifungal candidates derived from natural phytoalexins was a bright and promising strategy.

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Source
http://dx.doi.org/10.1016/j.ejmech.2023.115842DOI Listing

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