The Xylitol–Hydroxyapatite Synergy
Hydroxyapatite, the natural tooth mineral foundation, constitutes the most crucial dental building block as 97% of tooth enamel consists of this biocompatible material. Hydroxyapatite repairs, remineralizes, and strengthens dental surfaces through direct supplementation of natural tooth substance, providing biomimetic restoration at the molecular level. However, Hydroxyapatite requires extended time, surface area, and undisturbed conditions for optimal integration through complex physicochemical processes governing crystal formation. Smaller HAp particles demonstrate enhanced therapeutic potency through increased surface area providing more reaction sites for enamel integration. Yet fine particles aggregate rapidly through high surface energy promoting uncontrolled clustering, losing therapeutic potential before achieving meaningful dental contact. Traditional applications deliver excessive quantities too rapidly and imprecisely, as conventional formulations lack controlled-release mechanisms. Effectiveness remains incomplete or fails entirely through oversaturation preventing proper crystallization and therapeutic integration.
HAp Perfectly Deployed
💎 Prevention of aggregation while maintaining full bioactivity occurs through matrix architecture ensuring particle stability, as even finest particles remain stable and highly reactive until final deployment, enabling maximum repair capacity and remineralization through sustained particle reactivity.
💎 Dental Crystals release HAp in controlled fashion through matrix-enabled dosing systems, enabling optimal enamel integration via gradual incorporation that preserves structural integrity. Open dentin tubules - microscopic tooth openings - become sealed through particle penetration, providing tangible protection against sensitivity via nerve irritation prevention.
💎 Rest and extended time prove essential for crystallization requiring undisturbed conditions, as Abedulce Dental Crystals ensure slow, uniform saturation through controlled-release maintaining optimal therapeutic concentrations. Particularly during nighttime, HAp can optimally repair and remineralize while the body rests, as nocturnal stability supports complex reconstruction processes.
💎 HAp forms a protective, white layer on tooth enamel through regular application via continuous mineral supply causing surface densification. Xylitol prevents new plaque formation through pathogenic bacterial inhibition, making teeth appear visibly brighter without chemicals through natural mineral incorporation creating optical enhancement.
Literature
- Paszynska, E., Pawinska, M., Gawriolek, M., Kaminska, I., Otulakowska-Skrzynska, J., Marczuk-Kolada, G., Rzatowski, S., Sokolowska, K., Olszewska, A., Schlagenhauf, U., & Amaechi, B. T. (2021). Randomized Controlled Trial on the Preventive Effect of a Hydroxyapatite Toothpaste on Caries in Children.
- Lelli, M., Putignano, A., Marchetti, M., Foltran, I., Mangani, F., Procaccini, M., Roveri, N., & Orsini, G. (2014). Remineralization and repair of enamel surface by biomimetic zinc-carbonate hydroxyapatite: a comparative in vivo study.
- Paszynska, E., Pawinska, M., Gawriolek, M., Kaminska, I., Otulakowska-Skrzynska, J., Marczuk-Kolada, G., Rzatowski, S., Sokolowska, K., Olszewska, A., Schlagenhauf, U., & Amaechi, B. T. (2021). Randomized Controlled Trial on the Preventive Effect of a Hydroxyapatite Toothpaste on Caries in Children.