Related Experiment Video
Updated: Jan 20, 2026

Isolation of Epithelial Cells from Human Dental Follicle
Published on: November 5, 2021
Apple phenolic compounds enhance dental remineralization in human: a multifactorial in situ study
Niklas Roeder1, Antje Geiken2, Vivian Schaarschmidt2
1Division of Food Technology, Institute of Human Nutrition and Food Science, Kiel University, Kiel, Germany.
Introduction:
Excessive consumption of sugar-sweetened beverages is a major contributor to dental caries and a global public health concern due to its negative effects on oral health. Phenolic compounds found in edible plants have shown promising effects on caries prevention. Several studies indicate that these bioactive substances can inhibit caries formation through various mechanisms. However, studies which consider the complex interplay of the various factors are missing. In particular, human studies on the caries reducing effects of phenolic compounds in the co-presence of fermentable sugars are lacking.
Objective:
This human intervention study investigated the effect of daily consumption of an apple juice-based drink enriched with phenolic compounds on caries development, compared to the exact same drink without phenolic compounds.
Methods:
30 healthy male participants were enrolled in a double-blind, randomized, cross-over design. Caries development was measured using lesion depth in bovine tooth enamel samples installed in a removable dental appliance. A mixed model was used to analyze the data, including treatment effects, various oral parameters and interaction terms.
Results:
The analysis showed that consumption of the drink enriched with phenolic compounds resulted in a significant reduction in enamel lesion depth compared to the control, after adjustment for oral parameters and their interactions.
Conclusion:
Enrichment of phenolic compounds could be a promising strategy to mitigate the cariogenic effects of fermentable sugars in beverages. Analyzing the complex interactions between the oral parameters and treatment we bridge the translational gap of in vitro studies and achieve physiological relevance.
Related Concept Videos
04:07Isolation of Epithelial Cells from Human Dental Follicle
07:05Microwave-Assisted Extraction of Phenolic Compounds and Antioxidants for Cosmetic Applications Using Polyol-Based Technology
07:32In vitro Induction of Human Dental Pulp Stem Cells Toward Pancreatic Lineages
09:49Decellularized Apple-Derived Scaffolds for Bone Tissue Engineering In Vitro and In Vivo
07:20Human Colonoid Monolayers to Study Interactions Between Pathogens, Commensals, and Host Intestinal Epithelium
11:19Oral Biofilm Formation on Different Materials for Dental Implants

