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1.
Clin Oral Investig ; 24(7): 2295-2304, 2020 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-31712981

RESUMO

OBJECTIVES: This double-blind, crossover, and in situ study evaluated the effect of commercial high-F toothpastes with or without functionalized ß-tri-calcium phosphate (fTCP) and conventional-F toothpaste containing or not 1.5% arginine-CaCO3 in preventing and repairing root caries-like lesions. METHODS: Twelve volunteers wore palatal appliances containing sound (S) and pre-demineralized (PD) bovine root dentin blocks in 4 phases of 14 days/each. They used F toothpastes, 3×/day: (i) 1,450 µg F/g (conventional-F); (ii) 1,450 µg F/g + 1.5% arginine-CaCO3 (conventional-F + arginine/CaCO3); (iii) 5,000 µg F/g (high-F); and (iv) 5,000 µg F/g (high-F + fTCP). Sucrose solution (20%) was dropped 8×/day on the S blocks. The demineralization in the S blocks and the remineralization in the PD ones were estimated by % of surface hardness difference (%SH-S) and % of SH recovery (%SHR-PD), respectively. Caries lesion area (ΔS) was determined in the blocks. Statistical analyses were performed by one-way ANOVA/Kruskal-Wallis and multiple comparisons tests (p < 0.05). RESULTS: Both high-F toothpastes presented similar effect to prevent early caries lesions and it was higher than conventional-F + arginine/CaCO3. All treatments resulted in significantly lower ΔS values compared with conventional-F toothpaste (p < 0.0001). High-F + fTCP showed non-significantly higher preventive and reversible effect compared to high-F. The effect of conventional-F + arginine/CaCO3 was similar to high-F and lower than high-F + fTCP in preventing and reverting in-deep caries lesions. CONCLUSIONS: Overall, high-F toothpastes seem to be more effective and interesting feasible strategy for both prevention and remineralization actions in root dentin. CLINICAL RELEVANCE: With the trend of increasing dentin root caries, this study brings new evidences about the preventive and repair effect of high-F toothpastes with or without fTCP in root caries and support the use of arginine in toothpastes.


Assuntos
Cariostáticos , Cárie Dentária , Cárie Radicular , Desmineralização do Dente , Animais , Arginina/farmacologia , Fosfatos de Cálcio , Cariostáticos/uso terapêutico , Bovinos , Cárie Dentária/prevenção & controle , Método Duplo-Cego , Fluoretos , Humanos , Cárie Radicular/prevenção & controle , Desmineralização do Dente/complicações , Desmineralização do Dente/prevenção & controle , Remineralização Dentária , Cremes Dentais
2.
Curr Pharm Des ; 25(37): 3997-4012, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31701845

RESUMO

BACKGROUND: The high surface-to-volume ratio of polymeric nanofibers makes them an effective vehicle for the release of bioactive molecules and compounds such as growth factors, drugs, herbal extracts and gene sequences. Synthetic polymers are commonly used as sensors, reinforcements and energy storage, whereas natural polymers are more prone to mimicking an extracellular matrix. Natural polymers are a renewable resource and classified as an environmentally friendly material, which might be used in different techniques to produce nanofibers for biomedical applications such as tissue engineering, implantable medical devices, antimicrobial barriers and wound dressings, among others. This review sheds some light on the advantages of natural over synthetic polymeric materials for nanofiber production. Also, the most important techniques employed to produce natural nanofibers are presented. Moreover, some pieces of evidence regarding toxicology and cell-interactions using natural nanofibers are discussed. Clearly, the potential extrapolation of such laboratory results into human health application should be addressed cautiously.


Assuntos
Biopolímeros , Sistemas de Liberação de Medicamentos , Nanofibras , Alicerces Teciduais , Humanos , Engenharia Tecidual
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