Abstract / Summary
Successful treatment of primary Clostridioides difficile infection (CDI) while preventing its recurrence remains a major clinical challenge, with recurrent CDI (R-CDI) affecting 20-30% of treated patients. Persistence of C. difficile spores within the intestinal mucosa is thought to drive R-CDI following antibiotic treatment. Here, we show that intracellular C. difficile spores remain protected from taurocholate-triggered germination, and that nystatin, an FDA-approved antifungal that blocks spore entry into host cells, reduces this protected intracellular population and redirects spores toward an extracellular, germinating population accessible to antibiotics. In a murine model of R-CDI, oral co-administration of taurocholate with nystatin and antibiotics during primary CDI reduced R-CDI incidence from 100% to 44%. When administered during an active R-CDI episode, the same formulation reduced a second R-CDI from 100% to 62%. To improve bioavailability, we encapsulated nystatin and vancomycin in chitosan nanoparticles. Oral administration of nanoparticle-encapsulated vancomycin, alone or combined with nanoparticle-encapsulated nystatin, reduced R-CDI colonization to 33% and 44%, respectively, compared with 100% in mice receiving free vancomycin. Together, these findings support a therapeutic strategy that repurposes nystatin and taurocholate, in combination with antibiotics and nanoparticle-based delivery, to target intracellular spore persistence and reduce the incidence of C. difficile recurrence..