Hyaluronidase‐Responsive
MSN
–
HA
Coatings for Infection‐Triggered Antibiotic Delivery on Titanium Surfaces
Merve Yolum, Sakip Önder ABSTRACT
Implant‐associated infections remain a major challenge due to biofilm formation and uncontrolled antibiotic release from conventional coatings. This study presents an enzyme‐responsive nanoparticle‐based coating designed to enable localized and on‐demand antibiotic delivery on titanium implant surfaces. Hyaluronidase‐sensitive ciprofloxacin‐loaded mesoporous silica nanoparticles (MSNs) coated with hyaluronic acid (MSN–CIP–HA) were synthesized and deposited onto titanium substrates via electrophoretic deposition (EPD). The nanoparticles and coated surfaces were characterized in terms of morphology, surface properties, and wettability. Drug release behavior was evaluated under physiological (pH 7.4) and infection‐mimicking acidic (pH 5) conditions in the presence and absence of hyaluronidase. After 72 h, ciprofloxacin release from coated titanium reached 0.51 μg at pH 7.4 without enzyme and increased to 2.63 μg in the presence of hyaluronidase. Similarly, release at pH 5 increased from 0.93 to 3.31 μg following enzyme addition, indicating effective enzyme‐triggered degradation of the HA coating layer. Antibacterial performance against