Abstract Background Infective Endocarditis (IE) is a severe infection of the heart’s endocardial surface, with ~25% mortality. The global incidence exceeded 1 million cases in 2019. Staphylococcus, Streptococcus, and Enterococcus cause ~80% of cases, with S. aureus being most prevalent. Challenges in current IE treatments include antimicrobial resistance, poor biofilm penetration, and toxicity. Nanomedicine enables targeted drug delivery and addresses microbial resistance. Purpose This study develops a safe, effective nanodrug delivery system for IE management using Vancomycin-loaded PLGA nanoparticles (VAN-PLGA) formulated with green solvents and an FDA-approved polymer. The study focuses on Formulation 80% at MBC and 50% at MIC, whereas free vancomycin inhibited 80% at MBC but 20% at MIC. Cytotoxicity assays confirmed 90% cell viability for VAN-PLGA, while free vancomycin significantly reduced viability (50% at 20 μg/mL, 30% at 80 μg/mL). Wound healing was 90% for VAN-PLGA-treated HUVECs at 30 hours (160 μg/mL), compared to 40% for free vancomycin after 48 hours, proving VAN-PLGA’s superior safety and sustained antibacterial effect. Conclusion VAN-PLGA using green solvent is promising candidate for the management of IE and S. aureus infections. Unlike VAN-PLGA formulated with organic solvents, which showed 90% viability in carcinoma cell lines, VAN-PLGA demonstrated 90% cell viability on HUVECs, hVECs, and hVICs. this formulation demonstrated sustained drug release over 72 hours, resulting in T1/2 increase and dose frequency reduction. The MIC and MBC values recorded were higher than previously reported, proving enhanced antibacterial effects.SEM of VAN-PLGA using green solvents
Nazir et al. (2025) studied this question.