TY - JOUR
T1 - Pyridoxal and Salicylaldehyde Derivatives
T2 - Synthesis, Characterization, and Antifungal Potential Against Opportunistic Yeast Pathogens
AU - Camacho, Jairo
AU - Bejarano, Carlos A.
AU - Diaz, John E.
AU - Vargas-Casanova, Yerly
AU - Carvajal, Silvia Katherine
AU - Diaz Santoyo, Valentina
AU - Parra-Giraldo, Claudia M.
AU - Loaiza, Alix E.
N1 - Publisher Copyright:
© 2025 by the authors.
PY - 2025/3
Y1 - 2025/3
N2 - This study reports the synthesis, characterization, and antifungal evaluation of a series of pyridoxal and salicylaldehyde derivatives, using synthetic methodologies such as radical cyclizations and click chemistry. Compounds 6a and 6b, featuring a fused dihydrobenzoxepine-pyridine scaffold, demonstrated effective fungicidal activity with MIC values of 19 µg/mL against Cryptococcus neoformans 2807. Similarly, compound 6b exhibited notable activity with a MIC of 75 µg/mL against Candida auris PUJ-HUSI 537. Both compounds outperformed fluconazole (FLC) in these strains. In silico ADMET profiling revealed favorable pharmacokinetic properties, including blood–brain barrier penetration and drug-likeness parameters consistent with Lipinski’s rule of five. Cytotoxicity assays on human fibroblasts confirmed the low toxicity of compound 6a at the tested concentrations. These results highlight the potential of the fused dihydrobenzoxepine-pyridine scaffold as a promising antifungal candidate for further investigations.
AB - This study reports the synthesis, characterization, and antifungal evaluation of a series of pyridoxal and salicylaldehyde derivatives, using synthetic methodologies such as radical cyclizations and click chemistry. Compounds 6a and 6b, featuring a fused dihydrobenzoxepine-pyridine scaffold, demonstrated effective fungicidal activity with MIC values of 19 µg/mL against Cryptococcus neoformans 2807. Similarly, compound 6b exhibited notable activity with a MIC of 75 µg/mL against Candida auris PUJ-HUSI 537. Both compounds outperformed fluconazole (FLC) in these strains. In silico ADMET profiling revealed favorable pharmacokinetic properties, including blood–brain barrier penetration and drug-likeness parameters consistent with Lipinski’s rule of five. Cytotoxicity assays on human fibroblasts confirmed the low toxicity of compound 6a at the tested concentrations. These results highlight the potential of the fused dihydrobenzoxepine-pyridine scaffold as a promising antifungal candidate for further investigations.
KW - antifungal activity
KW - C. albicans
KW - C. auris
KW - C. neoformans
KW - click chemistry
KW - pyridoxal
KW - radical cyclizations
KW - salicylaldehyde
UR - http://www.scopus.com/inward/record.url?scp=86000585410&partnerID=8YFLogxK
U2 - 10.3390/molecules30051165
DO - 10.3390/molecules30051165
M3 - Article
C2 - 40076387
AN - SCOPUS:86000585410
SN - 1420-3049
VL - 30
JO - Molecules
JF - Molecules
IS - 5
M1 - 1165
ER -