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Silver Vanadate-Hydroxyapatite Nanofibrous Scaffolds for Enhanced Bone Regeneration and Infection Control in a Rat
Sara A Swidan1, Hagar M Mahdy2, Hanan Hendawy3
1Department of Oral and Maxillofacial Pathology, Faculty of Dentistry, Suez Canal University, Ismailia, Egypt.
Abstract:
This study details the development of electrospun nanofibrous scaffolds composed of hydroxyapatite (HAp), polycaprolactone (PCL), and silver vanadate (AgVO3) to enhance bone regeneration. AgVO3 and HAp were synthesized and integrated into PCL via electrospinning. The scaffolds were characterized using Fourier-transform infrared (FTIR) spectroscopy, Raman spectroscopy, scanning electron microscopy (SEM), contact angle analysis, and antibacterial testing. A critical-size tibial defect (3 mm) was created in rats (n = 30), which were divided into three groups: control, HAp@PCL, and AgVO3-HAp@PCL. Radiographic, histological, and histomorphometric assessments were conducted at 4- and 8-weeks postsurgery. The AgVO3-HAp@PCL scaffolds exhibited improved hydrophilicity, homogeneous structure, and strong antibacterial activity. Cone beam computed tomography (CBCT), histological, and histomorphometry analyses revealed significantly greater bone density and organized trabecular formation in the AgVO3-HAp@PCL group than in the other groups (p < 0.001). These results conclusively show that AgVO3 boosts scaffold bioactivity and antibacterial function, highlighting AgVO3-HAp@PCL as a strong candidate for bone regeneration in dental and orthopedic uses, even with a 0.15 mm thick single scaffold layer used in this study. This multifunctional scaffold may serve as a synthetic bone graft alternative in maxillofacial reconstruction and dental surgery, particularly where infection control is critical.

