Related Experiment Video
Updated: May 20, 2026

Porphyromonas gingivalis as a Model Organism for Assessing Interaction of Anaerobic Bacteria with Host Cells
Published on: December 17, 2015
Porphyromonas gingivalis-Derived Immunologic Nanozymes as Smart Microenvironment-Adaptive Regulators for Programmed
Chengjing Xu1, Jinming Zhang1, Xiaocan Liu1
1Jilin Provincial Key Laboratory of Tooth Development and Bone Remodeling, School and Hospital of Stomatology, Jilin University, Changchun 130021, China.
None:
Smart reactive oxygen species (ROS) regulation systems associated with the dynamic treatment of all infected wounds, including oral ones, usually involve the generation of ROS to kill pathogens and the reduction of ROS levels to promote tissue repair, which seems impossible to achieve simultaneously. Meanwhile, remodeling the immune microenvironment is also crucial for oral wound healing. Herein, a microenvironment-adaptive immunologic nanozyme based on Porphyromonas gingivalis (P. gingivalis)-derived nanodots (P-dots) is developed for the programmed cascade therapy of oral mucosal infection by regulating nanozyme-assisted cascade reactions. Due to the retention of active Fe-N4 centers of heme and similar molecular patterns related to P. gingivalis, P-dots prepared via a facile hydrothermal strategy exhibit admirable multienzyme catalytic activity and ideal immunomodulation function. More importantly, P-dots enable dynamic regulation of ROS production and elimination in response to changes in the oral infected wound microenvironment. Specifically, P-dots exhibit peroxidase-like catalytic activity in the early stages of oral mucosal infection, leading to the production of ROS that kill bacteria. After disinfection, P-dots switch to superoxide dismutase-like and catalase-like catalytic behaviors and scavenge unwanted ROS around the wounds. Together, our well-developed P-dots-involved system with high biosafety can serve as an intelligent microenvironment-adaptive approach for the dynamic, whole-stage therapy of oral mucosal infection through accurate ROS regulation.
Related Concept Videos
The Oral Microbiota
Gene Regulation in Microbial Communities: Quorum Sensing
