Related Experiment Video
Updated: Apr 28, 2026

Animal Model of Implant-Associated Infections in Mice
Published on: June 27, 2025
Sequential bioelectric programming of Macrophages via ferroelectric nanostructured surface to combat implant
Kai Li1, Zishan Xu1, Xueqing Wang1
1Department of Biomaterials, School and Hospital of Stomatology, Cheeloo College of Medicine, Shandong University & Shandong Key Laboratory of Oral Diseases & Shandong Engineering Research Center of Dental Materials and Oral Tissue Regeneration & Shandong Provincial Clinical Research Center for Oral Diseases, Jinan, 250012, China.
Abstract:
Implant-associated infections impair osseointegration by suppressing macrophage-mediated antibacterial responses and blocking reparative phenotype transition, while conventional antimicrobial strategies may compromise bone regeneration. Although electrical stimulation holds promise for macrophage modulation, achieving spatiotemporally controlled bioelectrical regulation remains a challenge. Herein, we engineered a ferroelectric barium titanate-nanostructured titanium implant (ferroTi) that enables sequentially controlled electrical manipulation of macrophages for coordinated antibacterial action and osteogenic promotion. Under ultrasound (US) activation, ferroTi generates dynamic electrical signals (ESdynamic) which activate voltage-gated Ca2+ channels to potentiate bacterial phagocytosis in macrophages, eradicating the methicillin-resistant Staphylococcus aureus (MRSA) infection. Concurrently, ferroTi's inherent surface potential provides static electrical signals (ESstatic) that enhance focal adhesion of macrophages and polarize macrophages toward an anti-inflammatory phenotype to foster bone mesenchymal stem cell osteogenesis. In vivo, ferroTi successively eliminated MRSA infection via US-activated ESdynamic and significantly enhanced bone integration through ESstatic-driven immunomodulation. This ferroelectric biointerface-mediated immunomodulation presents a synchronized noninvasive strategy for treating infected implants.

