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1.
Antibiotics (Basel) ; 11(10)2022 Sep 28.
Article in English | MEDLINE | ID: mdl-36289978

ABSTRACT

Denture-related stomatitis (DRS) is frequent oral inflammation in complete denture wearers. This study evaluated the effect of a hygiene protocol on DRS remission, local inflammatory factors, and hemodynamic responses. Thirty-three individuals were enrolled in the study. The outcomes were measured before and after 10 days of a hygiene protocol treatment consisting of brushing the palate with a soft brush and water and denture brushing with a denture-specific brush and mild soap, as well as immersion of the denture for 20 min in a 0.25% sodium hypochlorite solution. Data were analyzed by paired Wilcoxon for biofilm removal and CFU count of microorganisms. The paired T test was used to assess salivary MUC 1, cytokines, and arterial pressure (p < 0.05). A significant difference was found in the DRS degree (p < 0.001), biofilm (p < 0.001), microbial load of Candida spp. (p < 0.001), Gram-negative (p < 0.004), Staphylococcus spp. (p < 0.001), and S. mutans (p < 0.001) of the denture, and S. mutans (p < 0.001) of the palate after use of the protocol. The salivary flow (p = 0.2) and pH (p = 0.97) did not change; there was an increase of MUC 1 (p = 0.049) and a decrease in IL-6 (p = 0.038), IL-2 (p = 0.04), IL-10 (p = 0.041), and IFNγ (p = 0.04). There was also a decrease in systolic (p = 0.012) and mean arterial pressure (p = 0.02). The current hygiene protocol reduced the inflammation degree of DRS and promoted an improvement of local inflammatory factors and a reduction in the systolic arterial pressure of the patients.

2.
J Appl Oral Sci ; 29: e20210024, 2021.
Article in English | MEDLINE | ID: mdl-34495107

ABSTRACT

BACKGROUND: Understanding the behavior of Candida spp. when exposed to denture disinfectants is essential to optimize their effectiveness. Changes in the virulence factors may cause increased resistance of Candida spp. to disinfectant agents. OBJECTIVE: To evaluate the microbial load, cellular metabolism, hydrolytic enzyme production, hyphae formation, live cell and biofilm quantification of Candida albicans, Candida tropicalis and Candida glabrata after exposure to disinfectant solutions. METHODOLOGY: Simple biofilms were grown on heat-polymerized acrylic resin specimens, and divided into groups according to solutions/strains: distilled water (control); 0.25% sodium hypochlorite (NaOCl 0.25% ); 10% Ricinus communis (RC 10%); and 0.5% Chloramine T (CT 0.5%). The virulence factors were evaluated using the CFU count (microbial load), XTT method (cell metabolism), epifluorescence microscopy (biofilm removal and live or dead cells adhered), protease and phospholipase production and hyphae formation. Data were analyzed (α=0.05) by one-way ANOVA/ Tukey post hoc test, Kruskal-Wallis test and Wilcoxon test. RESULTS: NaOCl 0.25% was the most effective solution. CT 0.5% reduced the number of CFUs more than RC 10% and the control. RC 10% was effective only against C. glabrata. RC 10% and CT 0.5% decreased the cellular metabolism of C. albicans and C. glabrata. Enzyme production was not affected. Hyphal growth in the RC 10% and CT 0.5% groups was similar to that of the control. CT 0.5% was better than RC 10% against C. albicans and C. tropicalis when measuring the total amount of biofilm and number of living cells. For C. glabrata, CT 0.5% was equal to RC 10% in the maintenance of living cells; RC 10% was superior for biofilm removal. CONCLUSIONS: The CT 0.5% achieved better results than those of Ricinus communis at 10%, favoring the creation of specific products for dentures. Adjustments in the formulations of RC 10% are necessary due to efficacy against C. glabrata. The NaOCl 0.25% is the most effective and could be suitable for use as a positive control.


Subject(s)
Candida , Disinfectants , Acrylic Resins , Biofilms , Candida albicans , Virulence Factors
3.
J Prosthodont ; 30(5): 394-400, 2021 Jun.
Article in English | MEDLINE | ID: mdl-33464687

ABSTRACT

PURPOSE: This prospective study evaluated and correlated the impact of ocular prostheses on quality of life and stress with socioeconomic level and clinical characteristics. The clinical difficulties and perceptions of patients after ocular rehabilitation were evaluated. MATERIALS AND METHODS: Anophthalmic patients (at least 18 years of age) who were not users of ocular prostheses were recruited. The Medical Outcomes Short-Form Health Survey (SF-36) and Perceived Stress Scale (PSS-10) questionnaires were administered before and after 3 and 6 months of prosthesis installation. Clinical characteristics, difficulties, and perceptions were evaluated by quantitative and descriptive analysis (7 days, 3 months, 6 months). Data were analyzed by the Friedman test and Pearson Correlation test (α = 0.05). RESULTS: The final sample consisted of 26 patients. Quality of life showed improvement in the "Bodily Pain" and "General Health" domains. Wearing the prosthesis did not influence perceived stress. The clinical evaluation showed clinical discharge over 6 months and presence of pain only at 7 days. A weak correlation occurred between sociodemographic characteristics and the categories "Role-Physical" (r = 0.423) and "General Health" (r = 0.494); cause of anophthalmia and "Role-Physical" (r = -0.471); and type of surgery and "General Health" (r = -0.432). CONCLUSIONS: According to the results of this study, the provision of ocular prostheses showed positive influence in 2 domains of quality of life and weak correlations with socioeconomic level, type of surgery, and cause of loss. Ocular rehabilitation did not influence stress. The use and care of the prostheses did not affect tissue inflammation, but the discharge was continuous.


Subject(s)
Anophthalmos , Dental Implants , Eye, Artificial , Humans , Prospective Studies , Quality of Life , Stress, Psychological/etiology , Surveys and Questionnaires
4.
J. appl. oral sci ; 29: e20210024, 2021. tab, graf
Article in English | LILACS | ID: biblio-1340097

ABSTRACT

Abstract Understanding the behavior of Candida spp. when exposed to denture disinfectants is essential to optimize their effectiveness. Changes in the virulence factors may cause increased resistance of Candida spp. to disinfectant agents. Objective To evaluate the microbial load, cellular metabolism, hydrolytic enzyme production, hyphae formation, live cell and biofilm quantification of Candida albicans, Candida tropicalis and Candida glabrata after exposure to disinfectant solutions. Methodology Simple biofilms were grown on heat-polymerized acrylic resin specimens, and divided into groups according to solutions/strains: distilled water (control); 0.25% sodium hypochlorite (NaOCl 0.25% ); 10% Ricinus communis (RC 10%); and 0.5% Chloramine T (CT 0.5%). The virulence factors were evaluated using the CFU count (microbial load), XTT method (cell metabolism), epifluorescence microscopy (biofilm removal and live or dead cells adhered), protease and phospholipase production and hyphae formation. Data were analyzed (α=0.05) by one-way ANOVA/ Tukey post hoc test, Kruskal-Wallis test and Wilcoxon test. Results NaOCl 0.25% was the most effective solution. CT 0.5% reduced the number of CFUs more than RC 10% and the control. RC 10% was effective only against C. glabrata. RC 10% and CT 0.5% decreased the cellular metabolism of C. albicans and C. glabrata. Enzyme production was not affected. Hyphal growth in the RC 10% and CT 0.5% groups was similar to that of the control. CT 0.5% was better than RC 10% against C. albicans and C. tropicalis when measuring the total amount of biofilm and number of living cells. For C. glabrata, CT 0.5% was equal to RC 10% in the maintenance of living cells; RC 10% was superior for biofilm removal. Conclusions The CT 0.5% achieved better results than those of Ricinus communis at 10%, favoring the creation of specific products for dentures. Adjustments in the formulations of RC 10% are necessary due to efficacy against C. glabrata. The NaOCl 0.25% is the most effective and could be suitable for use as a positive control.


Subject(s)
Candida , Disinfectants , Acrylic Resins , Candida albicans , Biofilms , Virulence Factors
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