Preparation and In Vitro Evaluation of Alginate Microparticles Containing Amphotericin B for the Treatment of Candida

Merlis P Alvarez-Berrios1, Lisa M Aponte-Reyes1, Lourdes Diaz-Figueroa1

  • 1Department of Science and Technology, Inter American University of Puerto Rico, Ponce Campus, Ponce, PR, USA.

Insights

This study developed alginate microparticles to deliver Amphotericin B (AmB) for invasive candidiasis. The new formulation effectively targets Candida albicans with reduced lung toxicity compared to existing AmB treatments.

Area of Science:

  • Biomaterials Science
  • Pharmaceutical Sciences
  • Mycology

Background:

  • Invasive candidiasis (IC) is a significant cause of mortality in critically ill patients.
  • Amphotericin B (AmB) is effective against IC but causes severe side effects, and lipid formulations have limitations like cost and pulmonary toxicity.
  • Alginate shows promise as a cost-effective drug delivery system for toxic drugs.

Purpose of the Study:

  • To develop and evaluate alginate microparticles (MCPs) loaded with Amphotericin B (AmB) for treating invasive candidiasis.
  • To assess the impact of this formulation on antifungal efficacy against Candida albicans and toxicity in human lung cells.

Main Methods:

  • AmB was encapsulated into alginate microparticles using emulsification/external gelation.
  • Antifungal effectiveness was evaluated using cell counting and plate count methods against Candida albicans.
  • Toxicity was assessed in human lung cells via CellTiter 96® AQueous assay and acridine orange diffusion analysis.

Main Results:

  • The alginate-based microplatform demonstrated antifungal toxicity against Candida albicans comparable to free AmB.
  • The developed formulation exhibited minimal toxicity to human lung cells.
  • This suggests a potential reduction in pulmonary toxicity compared to commercial AmB formulations.

Conclusions:

  • Alginate microparticles represent an effective strategy for delivering AmB against Candida albicans.
  • This formulation offers a promising alternative with reduced toxicity, potentially requiring fewer infusions than current treatments.