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Published on: March 29, 2024
Antimicrobial efficacy of indocyanine green-mediated photodynamic therapy against infected root canals with diverse
Yumei Ning1, Yachao Zou1, Chaoru Song1
1Center of Stomatology, The Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi 330006, China; Jiangxi Provincial Key Laboratory of Oral Diseases, The Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi 330006, China; JXHC Key Laboratory of Periodontology, The Second Affiliated Hospital of Nanchang University, Nanchang, Jiangxi 330006, China; The Institute of Periodontal Disease, Nanchang University, Nanchang, Jiangxi 330006, China.
Objective:
This study aims to assess the efficacy of indocyanine green-mediated antimicrobial photodynamic therapy (ICG-aPDT) in enhancing disinfection following chemomechanical preparation in root canals infected with Enterococcus faecalis, characterized by varying cross-sectional morphologies.
Methods:
A total of sixty extracted single-rooted teeth were categorized into groups based on canal morphology-round, oval, long-oval, or flattened-determined by the ratio of the maximum to minimum canal diameter measured 3 mm from the apical foramen (n = 15 per group). Following the establishment of a 70-day Enterococcus faecalis biofilm model, microbial samples were collected at three stages: prior to treatment, post-chemomechanical preparation using ProTaper Gold instruments, 3% sodium hypochlorite, and 17% EDTA, and subsequent to ICG-aPDT. During ICG-aPDT, indocyanine green was applied for 1 min and irradiated with an 808 nm diode laser in pulsed-wave mode at 2.5 W for two 30-second cycles. Colony-forming units were quantified, antibacterial efficacy was calculated, and representative specimens were analyzed using scanning electron microscopy. The irradiation protocol was determined through external root-surface thermography and DPBF-based reactive oxygen species detection.
Results:
Under the specified irradiation conditions, the peak external root-surface temperature reached 44.7 °C, and a time-dependent decline in DPBF absorbance was observed, indicating the generation of reactive oxygen species. Baseline bacterial counts were statistically similar across the four groups (p = 0.987). Following chemomechanical preparation, the antibacterial rates were 84.4 ± 2.1% for round canals, 78.4 ± 3.4% for oval canals, 66.8 ± 3.0% for long-oval canals, and 53.8 ± 5.4% for flattened canals, with statistically significant differences among the groups (p < 0.05). Post-ICG-aPDT treatment, the antibacterial rates increased to 97.0 ± 0.7%, 94.4 ± 1.0%, 94.2 ± 0.9%, and 93.8 ± 1.1%, respectively. The final antibacterial rate remained highest in round canals, while no significant differences were observed among the three non-round canal groups (p = 0.268).
Conclusion:
The cross-sectional morphology of root canals significantly affected the antibacterial efficacy of chemomechanical preparation. ICG-aPDT further reduced viable bacterial counts across all canal groups and minimized the differences in final antibacterial efficacy among oval, long-oval, and flattened canals. These findings warrant further exploration of ICG-aPDT as an adjunctive disinfection strategy.

