Structure−Activity Relationship Profiling of Substituted N -Phthalimidopiperidine Analogs as Broad-Spectrum Antifungal Agents
Matthew P. Dupuis, Nour M. Alkashef, Roman A. Matamoros, Ammar A. Khan, Autumn S. Dove, Ariel L. Burgio, Christopher B. Lawrence, Mohamed N. Seleem, Webster L. SantosAbstract
Invasive fungal infections are a major and escalating global health concern, frequently resulting in life-threatening systemic infection. The combination of limited therapeutic options, increasing mortality, and the rapid emergence of multidrug-resistant fungal pathogens highlights the critical need for novel antifungal agents. With this goal in mind, a high-throughput screening assay identified SLB1122168, and a subsequent structure−activity relationship study led to more potent analogs, including SSD2032594, which demonstrated fungicidal activity with a minimum inhibitory concentration of 1−4 μg/mL against Candida auris, Cryptococcus neoformans, Aspergillus fumigatus, and Mucormycosis-causing species. Additionally, SSD2032594 showed potent activity against mature biofilms of C. auris and exhibited a negligible resistance tendency in vitro. Furthermore, SSD2032594 showed a survival benefit in the Caenorhabditis elegans nematode model of C. auris infection, resulting in a ∼30% higher survival rate. Taken together, these results highlight SSD2032594 as a candidate for antifungal drug development, targeting infections caused by different fungal pathogens.