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Published on: July 10, 2014
Fluoride plus functionalized β-TCP: a promising combination for robust remineralization.
1Indiana Nanotech, Indianapolis, IN 46202, USA. rlk.nanotech@gmail.com
Advances in Dental Research
|August 18, 2012
Summary
Fluoride prevents tooth decay by aiding enamel remineralization. A new functionalized beta-tricalcium phosphate (fTCP) system enhances fluoride
Area of Science:
- Biomaterials Science
- Dental Research
- Cariology
Background:
- Fluoride is the established standard for preventing tooth decay, enhancing enamel remineralization and altering solubility.
- Despite fluoride's success, tooth decay remains a significant oral health issue, necessitating novel therapeutic agents.
- Existing calcium-based remineralization strategies often require high ion concentrations, unlike the proposed low-dose system.
Purpose of the Study:
- To evaluate the efficacy of functionalized beta-tricalcium phosphate (fTCP) in combination with fluoride for enhanced tooth enamel remineralization.
- To investigate the potential of fTCP as a novel, low-dose mineralizing agent for dental caries prevention.
- To compare the mineral properties produced by the combination of fluoride and fTCP against fluoride, native beta-TCP, or fTCP alone.
Main Methods:
- Laboratory and clinical studies were conducted to assess the remineralization potential of fTCP combined with fluoride.
- The acid resistance and mineral characteristics of enamel treated with the combination therapy were analyzed.
- The functionalization of beta-tricalcium phosphate (β-TCP) was achieved using organic and/or inorganic molecules to control fluoride-calcium interactions.
Main Results:
- The combination of fluoride and fTCP produced a stronger, more acid-resistant mineral compared to fluoride, native β-TCP, or fTCP used individually.
- Functionalized β-TCP acts as a low-dose system, designed for integration into existing topical fluoride preparations.
- The functionalization of β-TCP creates a barrier, preventing premature fluoride-calcium interactions and facilitating mineralization.
Conclusions:
- Supplementing topical fluoride treatments with fTCP shows promise for enhancing remineralization efficacy.
- fTCP aids fluoride-based nucleation, with subsequent remineralization driven by salivary and dietary calcium and phosphate.
- Further clinical studies are warranted to fully establish the benefits of fTCP in dental caries prevention.
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