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Fluoride varnish application and the temporal evolution of supragingival microbiota in children with differential
Fanghong Liu1, Haiyan Xue1, Yiling Jiang1
1College & Hospital of Stomatology, Guangxi Key Laboratory of Oral and Maxillofacial Rehabilitation and Reconstruction, Guangxi Clinical Research Center for Craniofacial Deformity, Guangxi Key Laboratory of Oral and Maxillofacial Surgery Disease Treatment, Guangxi Health Commission Key Laboratory of Prevention and Treatment for Oral Infectious Diseases, Key Laboratory of Research and Application of Stomatological Equipment, Education Department of Guangxi Zhuang Autonomous Region, Guangxi Medical University, Nanning, China.
Background:
Fluoride varnish is used to prevent early childhood caries, but its longitudinal ecological impact on the supragingival microbiome beyond enamel remineralization remains poorly understood, especially long-term.
Objective:
To characterize 24‑month supragingival plaque microbiome evolution in young children under biannual fluoride varnish, stratified by caries risk, and fluoride's ecological effect on microbial structure, interactions, and metabolism.
Design:
A total of 48 children were categorized into low‑, moderate‑, and high‑caries‑risk groups using the modified caries-risk assessment tool for preschool children (PSC-MCAT). All received fluoride varnish every six months. Supragingival plaque collected at five timepoints over 24 months. 16S rRNA sequencing assessed diversity, key taxa, co-occurrence networks, and PICRUSt2 metabolic pathways.
Results:
Baseline alpha‑ and beta‑diversity differed significantly across risk groups (p<0.05). After sustained fluoride, intergroup differences diminished. High‑risk group retained caries‑associated genera (e.g. Leptotrichia, Prevotella, Veillonella) with suppressed abundance. Fluoride increased network complexity and negative correlations in moderate‑/high‑risk groups. Glycolysis, TCA cycle, and starch/sucrose metabolism were inhibited in the high‑risk group post‑intervention.
Conclusions:
Regular fluoride varnish reduces ecological disparities across risk groups, suppresses cariogenic taxa, and alters microbial interactions and carbohydrate metabolism, promoting homeostasis. High‑risk children may require more frequent interventions.
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