This cohort study evaluated the fate of sound surfaces and inactive non-cavitated (INC) and active non-cavitated (ANC) caries lesions in a population-based sample of South Brazilian adolescents, in answer to the question: "Is lesion activity assessment a reliable criterion to diagnose a patient's caries activity?" A total of 801 schoolchildren were examined at baseline (aged 12 years) and after a mean time interval of 2.5 years. Data collection included a questionnaire and clinical examination. Patients were classified as caries-free (patients without any lesion), caries-inactive (patients with only inactive lesions), and caries-active (patients with at least one active lesion). The primary outcome was caries progression (presence of cavity, underlying dentin shadow, filling, or extraction at the follow-up exam). Negative binomial regression models were used to estimate the risk for caries progression. The main predictor variable was status of the surface at baseline: sound, INC, or ANC. Progression rates of 1.0, 9.0, and 12.6% were found for sound surfaces, INC, and ANC, respectively. INC (incidence risk ratio [IRR] 5.37, 95% CI 4.22-6.83) and ANC (IRR 4.96, 95% CI 3.43-7.17) had greater risk for caries progression than sound surfaces. Similar risks for progression were found for ANC and INC (IRR 0.92, 95% CI 0.64-1.32). Progression rates were 0.6, 1.1, and 2.2% for caries-free, caries-inactive, and caries-active individuals, respectively (p < 0.05). The risk for caries progression of sound surfaces was higher among caries-active adolescents (caries-free: IRR 2.78, 95% CI 1.63-4.72; caries-inactive: IRR 2.19, 95% CI 1.65-2.90). Caries-inactive patients behaved similarly to caries-free individuals (IRR 1.27, 95% CI 0.73-2.20). This study demonstrated the possibility of defining a patient's caries activity profile based on lesion features.
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Carbohydr Polym
March 2025
Food & Nutritional Sciences Programme, School of Life Sciences, The Chinese University of Hong Kong, Shatin 999077, Hong Kong. Electronic address:
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January 2025
Department of Forestry and Climate Change, Injibara University, Injbara, Ethiopia.
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Department of Preventive Dental Sciences, College of Dentistry, Dar Al Uloom University, Riyadh, Saudi Arabia.
Impact of surface conditioner phytic acid (IP6) Er,Cr:YSGG laser (ECYL) methylene blue photodynamic therapy (MB-PDT) on the microleakage and shear bond strength (SBS) of resin-modified glass ionomer cement (RMGIC) to primary sound dentin. Overall, 80 extracted sound primary molars were collected followed by their submergence in self-cure acrylic resin. The dentin surface was exposed and made flat and was assigned into four groups based on the surface conditioning.
View Article and Find Full Text PDFBiopolymers
March 2025
Centro de Investigación en Química Aplicada, Saltillo, Coahuila, Mexico.
Exploring new ecological and simultaneous processes to modify wood fibers (WF) by-products is a required pathway toward circular economy and sustainability. Thus, plasma-activated water (PAW) and ultrasound (U) were employed as alternative methods to modify WF in a continuous process. Such treatments promoted the etching and cavities on the WF surface that destabilized the hydrogen bonds of the hemicellulose and lignin molecules, increasing the cellulose fraction.
View Article and Find Full Text PDFBraz Oral Res
January 2025
Universidade de São Paulo - USP, School of Dentistry, Department of Operative Dentistry, São Paulo, SP, Brazil.
The aim of this study was to assess the effect of a chlorhexidine digluconate solution (CHX) applied as an antiproteolytic agent for controlling erosive tooth wear or as part of the adhesive treatment on long-term bond strength to eroded dentin. Dentin specimens were abraded with a 600-grit silicon carbide (SiC) paper for 1 min (sound dentin - S), subsequently treated with 2% CHX for 1 min (with excess removed, followed by a 6-hour rest), and eroded by exposure to Coca-Cola for 5 min, three times a day, for 5 days (CHX-treated and eroded dentin - CHXE), or only eroded (eroded dentin - E). The specimens were acid-etched (15 s), rinsed (30 s), dried (15 s), and rehydrated with 1.
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