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Oral scurvy and periodontal disease.

Although gingival bleeding is a manifestation of both scurvy and inflammatory periodontal disease, the two conditions are distinctly separate entities. The defective collagen synthesis associated with scurvy also manifests many of the same symptoms as deficient vitamin C physiology, but neither condition is associated with periodontal disease. Unlike scurvy, the various periodontal diseases are caused by oral plaque microorganisms. The body's reaction to these microorganisms is strongly influenced by the compromised functioning of leucocytes and monocytes. Although certain infections and systemic diseases cause gingival bleeding, avitaminosis-C does not cause commonly encountered periodontitis. Vitamin C should not be used for the prophylaxis or cure of periodontal disease in otherwise healthy, well-nourished individuals. A patient with bleeding gingivae warrants referral to a periodontist, oral medicine specialist, or appropriately qualified dentist for examination and treatment.

Ascorbic Acid↗

[Bacterial virulence in the etiology of periodontal diseases].

Strong relationships have been very often described between various form of periodontal disease (PD) and certain bacterial species, so that nowadays periodontal disease is recognized as an infectious disease. Destruction of periodontal supporting tissues happens as a response to very intricate host-parasite interactions. When the clinician will be able to fully understand and identify such phenomena it would be possible to succeed in a properly diagnosis and control of the active phase of periodontal disease. The first step in such a direction would be to analyze the common characteristic of some bacterial species, the so called suspected periodontopathogens. Such species namely Gram-negative, associated with the outbreak of periodontal disease have in common the capacity to disrupt the integrity of the host defences by means of the so called virulence factors. These factors may enhance the bacterial colonization or may interfere with the host response that ultimately results in periodontal support breakdown. The present review focuses on the virulence factors of the main suspected periodontopathogens evaluating the effects on the host immune response and directly on the periodontal tissues.

Aggregatibacter actinomycetemcomitans↗

Management of periodontal disease: understanding the options.

Periodontal disease is the most common disease occurring in domestic dogs and cats, and local severity and the impact on the rest of the body are reasons why all companion animal patients should receive an oral examination every time they are seen. This article provides the background information on how an effective periodontal management program can be tailored for each patient.

Animals↗

Is there a relationship between rheumatoid arthritis and periodontal disease?

AIM: The aim of this study was to determine whether there is a relationship between disease experience of rheumatoid arthritis and periodontal disease. METHODS: 1,412 individuals attending the University of Queensland's School of Dentistry were assessed for the prevalence of periodontal disease and rheumatoid arthritis. Analysis of data obtained from a self-reported health questionnaire and dental records was carried out and included: number of individuals referred for advanced periodontal care (test group); number of individuals attending for routine dentistry; determination of rheumatoid arthritis, cardiovascular disease and diabetes mellitus through self-reporting and assessment of prescription medications; assessment of periodontal disease through assessment of existing oral radiographs. RESULTS: In patients referred for periodontal treatment, the prevalence of self-reported rheumatoid arthritis was 3.95% which is significantly higher than that seen in patients not referred for periodontal treatment (0.66%) and also that reported in the general population (1%). Of those referred patients with rheumatoid arthritis, 62.5% had advanced forms of periodontal disease. These results were mirrored in the results of the self-reported prevalence of cardiovascular disease and diabetes mellitus which was consistent with the published higher prevalence in periodontal patients. CONCLUSIONS: Based on data derived from self-reported health conditions, and not withstanding the limitations of such a study, we conclude that there is good evidence to suggest that individuals with moderate to severe periodontal disease are at higher risk of suffering from rheumatoid arthritis and vice versa.

Adult↗

Effects of smoking and drinking habits on the incidence of periodontal disease and tooth loss among Japanese males: a 4-yr longitudinal study.

OBJECTIVE: We investigated the risk of periodontal disease and tooth loss, associated with habits of smoking and alcohol consumption, in a longitudinal study. SUBJECTS AND METHODS: The subjects were 1332 Japanese males, 30-59 yr of age, who were free from periodontal disease at the baseline check-up, and who underwent a second check-up 4 yr later. Periodontal disease was diagnosed using the community periodontal index score, based on the clinical probing of pocket depth (> or = 4 mm). Smoking and alcohol consumption patterns were evaluated using a self-administered questionnaire. RESULTS: A dose-response relationship was observed between the amount of smoking and the incidence of periodontal disease in each age group. The overall odds ratios (95% confidence intervals), adjusted for age and alcohol, were 1.51 (0.95-2.22), 1.58 (1.13-2.22) and 2.81 (1.96-4.03), among smokers consuming 1-19, 20 or 21 or more cigarettes per day, respectively, with a significant linear trend (p < 0.0001). A similar association was found between smoking and tooth loss, except for the 50-59-yr-old age group. The adjusted odds ratios were 1.26 (0.60-2.64), 2.01 (1.21-2.32) and 2.06 (1.23-3.48), respectively. A significant linear trend between smoking and tooth loss was also observed (p = 0.01). Ex-smokers showed no significant difference compared with nonsmokers. We also found a significant linear trend between alcohol consumption and tooth loss among 30-39-yr-old subjects, while no relationship was observed between alcohol consumption and periodontal disease. CONCLUSION: Cigarette smoking was found to be an independent risk factor for periodontal disease and tooth loss. Alcohol consumption was a limited risk factor for tooth loss in the younger age group, but was unrelated to periodontal disease. To prevent periodontal disease and tooth loss, health practitioners need to encourage people to stop smoking or not to start.

Adult↗

Periodontal disease, tooth loss, and incidence of ischemic stroke.

BACKGROUND AND PURPOSE: Periodontal and other infections have been suggested as potential risk factors for stroke. This study evaluates periodontal disease and tooth loss as risk factors for ischemic stroke. METHODS: The study population consisted of 41 380 men who were free of cardiovascular disease and diabetes at baseline. Periodontal disease history was assessed by mailed validated questionnaires. During 12 years of follow-up, stroke incidence was assessed and subclassified by use of medical history, medical records, and imaging reports. Hazard ratios (HRs) were adjusted for age, amount smoked, obesity, alcohol, exercise, family history of cardiovascular disease, multivitamin use, vitamin E use, profession, baseline reported hypertension, and hypercholesterolemia. Sex and socioeconomic status were inherently controlled for by restriction. Confounding variables were updated in the analyses for each 2-year follow-up interval. RESULTS: We documented 349 ischemic stroke cases during the follow-up period. Men who had < or =24 teeth at baseline were at a higher risk of stroke compared to men with > or =25 teeth (HR=1.57; 95% CI, 1.24 to 1.98). There was little evidence of an increased risk with recent tooth loss during follow-up. A modest association was seen between baseline periodontal disease history and ischemic stroke (HR=1.33; 95% CI, 1.03 to 1.70). Addition of dietary factors to the model changed the HR only slightly. CONCLUSIONS: Our results suggest that periodontal disease and fewer teeth may be associated with increased risk of ischemic stroke.

Adult↗

Fibronectin levels of unstimulated saliva from naval recruits with and without chronic inflammatory periodontal disease.

Past studies have suggested that gingival crevicular fluid is produced more readily in persons with severe periodontal diseases than in persons with healthy gingivae. In this study, salivary fibronectin was selected as an index of total gingival crevicular fluid flow. Our purpose was to determine whether a relationship could be found between salivary fibronectin level and periodontal disease status. Unstimulated saliva was collected from 20 healthy and 20 periodontally-diseased naval recruits. The periodontally-diseased subjects included 10 with localized juvenile periodontitis and 10 with moderate to severe periodontitis. Mean subject ages and salivary flow rates were similar for the 2 groups. Although 2 of the periodontally-diseased subjects showed unusually high fibronectin levels, the mean level for the remaining 18 subjects did not differ significantly from the mean of the healthy group, and no association of periodontal disease status with salivary fibronectin content was seen. Consequently, it was not evident from salivary fibronectin levels that the content of gingival crevicular fluid in unstimulated whole saliva differed significantly for persons with or without severe periodontal disease, except possibly for extreme cases of disease.

Adolescent↗

Periodontal disease as a risk factor for adverse pregnancy outcomes. A systematic review.

BACKGROUND: Recent studies have implicated a variety of infections, including periodontal diseases, as risk factors for adverse pregnancy outcomes such as prematurity and low birth weight. RATIONALE: A number of studies have shown that bacterial vaginosis is related to preterm and/or low birth weight (PT/LBW), which continues to be a significant cause of infant morbidity and mortality. It is also possible that other infectious processes, including periodontal diseases, contribute to PT/LBW. This systematic review examines the literature to determine the possible relationship between PT/LBW and periodontal diseases. FOCUSED QUESTION: Does prevention/control of periodontal disease as compared to controls have an impact on the initiation/progression of adverse pregnancy outcomes? SEARCH PROTOCOL: MEDLINE, pre-MEDLINE, MEDLINE Daily Update, and the Cochrane Oral Controlled Trials Register were searched to identify published studies that related variables associated with PT/LBW and periodontal disease. Searches were performed for articles published through October 2002. INCLUSION CRITERIA: Randomized controlled clinical trials (RCTs), case-control, and cohort studies were included. Study populations included mothers, with or without periodontal disease, who gave birth to preterm and/or mature infants. The interventions considered included all forms of periodontal therapy. EXCLUSION CRITERIA: Only studies on humans were included. DATA COLLECTION AND ANALYSIS: Due to study heterogeneity, meta-analysis was not possible. MAIN RESULTS: 1. Of the over 660 studies identified, 12 (6 case-control, 3 cross-sectional and longitudinal, and 3 intervention) met inclusion and exclusion criteria and were included in the analysis. 2. While several studies implicated periodontal disease as a risk factor for PT/LBW, few assessed the impact of the prevention and treatment of periodontal disease on outcomes. 3. Several epidemiologic studies did not support periodontal disease as a risk factor for PT/LBW. REVIEWERS' CONCLUSIONS: 1. Periodontal disease may be a risk factor for PT/LBW. 2. Additional longitudinal, epidemiologic, and interventional studies are needed to validate this association and to determine whether it is causal. 3. It is not yet clear whether periodontal diseases play a causal role in adverse pregnancy outcomes. 4. Preliminary evidence to date suggests that periodontal intervention may reduce adverse pregnancy outcomes.

Consensus↗

Untreated periodontal disease: a follow-up on 30 cases.

BACKGROUND: Many studies have shown that periodontal disease can be successfully treated. However, there is limited documentation as to what happens when periodontal disease is left untreated. This study examined patients in a private practice who were diagnosed with periodontal disease and did not complete any treatment. The goal was to see what happened to this group of untreated patients. METHODS: Thirty patients with periodontal disease were included in this study. After a mean period of 2.1 years without periodontal treatment, the patients were re-examined and the changes which occurred evaluated. RESULTS: There was a statistically significant increase in probing depth (3.43 mm to 3.95 mm) and attachment loss (4.19 mm to 4.77 mm) and a statistically significant decrease in the number of teeth present (23.37 to 22.67). Twenty-one teeth were lost, which was 3.0% of the teeth present at the time of initial diagnosis. The rate of tooth loss was 0.32 teeth/patient/year. The teeth that were lost had deeper recession, probing depths, and attachment loss than the teeth that were retained. Patient factors evaluated could not be associated with statistically significant changes in the clinical parameters, except that smokers had a greater number of sites gaining > or = 2 mm of attachment and patients with the poorest oral hygiene had a greater percent of sites breaking down. However, certain site specific variables could be associated with statistically significant changes in the clinical parameters. These included sites: with bleeding on probing, associated with molar furcations, on interproximal surfaces, at posterior teeth, with probing depths > or = 3.43 mm, with probing depths > or = 7 mm, attachment loss > or = 7 mm, and teeth with increased mobility. CONCLUSIONS: This group of patients with untreated periodontal disease had greater breakdown and tooth loss than one would expect to see in a group of patients if their periodontal disease was treated.

Adult↗

Oral HIV-I recovery in the presence of periodontal disease.

OBJECTIVE: To determine whether a significant association occurs between the presence of various periodontal diseases and recoverable infectious HIV-I in the saliva of injecting drug users. DESIGN: Five hundred and fifty-one injecting drug users were recruited from various programs associated with the Beth Israel Medical Center. Examiners were 'blinded' to the subject's HIV-I serostatus. A socio-economic and risk factors' survey was conducted and a complete oral examination, including periodontal disease indices was performed. Whole saliva and blood were collected for virus culture. MAIN OUTCOME MEASUREMENTS: Recovery of infectious HIV-I in saliva related to presence of periodontal diseases. RESULTS: Those HIV-I seropositive subjects with periodontal diseases did not differ from those HIV-I seropositive subjects without periodontal disease in mean age and immune status. Less than 1% of the HIV-I seropositive subjects had cultivable HIV-I in their saliva while it was present in 78% of PBMCs and 35% of the sera. There was no significant association between infectious HIV-I in saliva, serum, or PBMCs and any of the various periodontal diseases. CONCLUSIONS: The presence of periodontal disease in HIV-I seropositive injecting drug users does not appear to be a potential risk factor for infectious HIV-I in saliva, probably due to the various anti-viral components of saliva.

Adult↗

Salivary biomarkers of existing periodontal disease: a cross-sectional study.

BACKGROUND: The authors conducted a study to determine if salivary biomarkers specific for three aspects of periodontitis--inflammation, collagen degradation and bone turnover--correlate with clinica features of periodontal disease. METHODS: The relationship between periodontal disease and the levels of interleukin-1 beta (IL-1beta), matrix metalloproteinase (MMP)-8, and osteoprotegerin (OPG) in whole saliva of 57 adults (28 "case" subjects with moderate-to-severe periodontal disease and 29 healthy control subjects) was examined in a case-control trial. RESULTS: Mean levels of IL-1beta and MMP-8 in saliva were significantly higher in case subjects than in controls. Both analytes correlated with periodontal indexes, whereas, after adjustment for confounders, OPG did not. Elevated salivary levels of MMP-8 or IL-1beta (more than two standard deviations above the mean of the controls) significantly increased the risk of periodontal disease (odds ratios in the 11.3-15.4 range). Combined elevated salivary levels of MMP-8 and IL-1beta increased the risk of experiencing periodontal disease 45-fold, and elevations in all three biomarkers correlated with individual clinical parameters indicative of periodontal disease. CONCLUSION: Salivary levels of MMP-8 and IL-1beta appear to serve as biomarkers of periodontitis. CLINICAL IMPLICATIONS: Qualitative changes in the composition of salivary biomarkers could have significance in the diagnosis and treatment of periodontal disease.

Adult↗

Lymphocytotosicity for gingival epithelial cells in periodontal disease.

An immune pathogenesis has been implicated in periodontal disease. Lymphocytotoxicity assays utilizing a suspension of peripheral blood lymphocytes incubated with allogeneic trypsinized gingival epithelium were performed. The results demonstrate a significant in vitro lymphocytotoxicity for gingival epithelial target cells when the aggressor lymphocytes are from patients with destructive periodontal disease (high PDI). No significant lymphocytotoxicity was demonstrated with lymphocytes for periodontal disease-free (low PDI) patients. We conclude that there is a significant reduction in gingival epithelial cell survival after an 18-hour incubation with aggressor lymphocytes obtained frompatients who have destructive periodontal disease, and suggest there is a pathologic relationship between the patient's lymphocytes and the disease process.

Cytotoxicity Tests, Immunologic↗

The role of supragingival plaque in the control of progressive periodontal disease. A review.

Levels of supragingival plaque and calculus have been related to progressive periodontal disease, and control of supragingival plaque in conjunction with professional tooth cleaning subgingivally forms the basis for the management of progressive periodontal disease. However, the contribution towards the management of progressive periodontal disease brought about by supragingival plaque control alone is not clear. There are studies which address, directly or indirectly, the contribution of supragingival plaque control alone towards the management of progressive periodontal disease. The effects of supragingival plaque control alone have been evaluated clinically, histologically and microbiologically, and taken together, the evaluations suggest that these effects may not be as marked as when professional subgingival tooth cleaning is also performed. These studies, however, given the patterns of periodontal disease found in adults in many communities, can form the basis for advocating high individual levels of supragingival plaque control as a community measure in the management of periodontal disease. Further long-term investigations into this approach may be warranted.

Chlorhexidine↗

Periodontal disease in children and adolescents.

Periodontal disease is one of the most widespread diseases known. It can begin in childhood and progress through adolescence into adult life, eventually resulting in tooth loss. This article identifies the features of periodontal health, gingivitis and periodontitis in children and adolescents. Periodontal assessment, diagnosis and management in younger patients are also described.

Adolescent↗

Diabetes mellitus and periodontal diseases.

BACKGROUND: The purpose of this review is to provide the reader with practical knowledge concerning the relationship between diabetes mellitus and periodontal diseases. Over 200 articles have been published in the English literature over the past 50 years examining the relationship between these two chronic diseases. Data interpretation is often confounded by varying definitions of diabetes and periodontitis and different clinical criteria applied to prevalence, extent, and severity of periodontal diseases, levels of glycemic control, and complications associated with diabetes. METHODS: This article provides a broad overview of the predominant findings from research published in English over the past 20 years, with reference to certain "classic" articles published prior to that time. RESULTS: This article describes current diagnostic and classification criteria for diabetes and answers the following questions: 1) Does diabetes affect the risk of periodontitis, and does the level of metabolic control of diabetes have an impact on this relationship? 2) Do periodontal diseases affect the pathophysiology of diabetes mellitus or the metabolic control of diabetes? 3) What are the mechanisms by which these two diseases interrelate? and 4) How do people with diabetes and periodontal disease respond to periodontal treatment? CONCLUSIONS: Diabetes increases the risk of periodontal diseases, and biologically plausible mechanisms have been demonstrated in abundance. Less clear is the impact of periodontal diseases on glycemic control of diabetes and the mechanisms through which this occurs. Inflammatory periodontal diseases may increase insulin resistance in a way similar to obesity, thereby aggravating glycemic control. Further research is needed to clarify this aspect of the relationship between periodontal diseases and diabetes.

Cytokines↗

Infection and periodontal diseases.

Contemporary hypotheses that consider the severe forms of periodontal disease to be infections caused by site-specific microbes fail to satisfactorily explain the epidemiologic, anthropologic, and clinical features of periodontal diseases. The microbes that have been designated as periodontopathogens are commensal bacteria present in periodontal health and disease. Association of specific bacteria with various disease forms has been established, but association is confused with causation. None of the periodontal diseases can be transmitted between individuals or between diseased and healthy sites of a susceptible person. Past and present concepts of the etiology of the periodontal diseases are reviewed, and the deficiencies of contemporary periodontal theory are outlined. Host factors rather than bacteria determine whether gingivitis extends to horizontal periodontitis. Angular alveolar lesions, the severe form of periodontal bone loss, are hypothesized to be caused by the spread of pulpal inflammation to the adjacent periodontal tissues. When the resultant dental abscess becomes contiguous with the alveolar crest and gingival sulcus, secondary colonization of deep pockets by site-specific oral bacteria-selected for by the complex conditions of the site-can occur. This explanation accounts for the distribution of periodontopathogens, the localization of angular alveolar lesions, and the bursts of activity by which the disease progresses.

Bacterial Infections↗

Tobacco smoking and chronic destructive periodontal disease.

Tobacco smoking is the main risk factor associated with chronic destructive periodontal disease. No other known factor can match the strength of smoking in causing harm to the periodontium. The harmful effects manifest themselves by interfering with vascular and immunologic reactions, as well as by undermining the supportive functions of the periodontal tissues. The typical characteristic of smoking-associated periodontal disease is the destruction of the supporting tissues of the teeth, with the ensuing clinical symptoms of bone loss, attachment loss, pocket formation, and eventually tooth loss. A review of the international literature that has accumulated over the past 20 years offers convincing evidence that smokers exhibit greater bone loss and attachment loss, as well as more pronounced frequencies of periodontal pockets, than non-smokers do. In addition, tooth loss is more extensive in smokers. Smoking, thus, considerably increases the risk for destructive periodontal disease. Depending on the definition of disease and the exposure to smoking, the risk is 5- to 20-fold elevated for a smoker compared to a never-smoker. For a smoker exposed to heavy long-life smoking, the risk of attracting destructive periodontal disease is equivalent to that of attracting lung cancer. The outcome of periodontal treatment is less favorable or even unfavorable in smokers. Although long-term studies are rare, available studies unanimously agree that treatment failures and relapse of disease are predominantly seen in smokers. This contention is valid irrespective of treatment modality, suggesting that smoking will interfere with an expected normal outcome following commonplace periodontal therapies. The majority of available studies agree that the subgingival microflora of smokers and non-smokers are no different given other conditions. As a consequence, the elevated morbidity in smokers does not depend on particular microflora. The mechanisms behind the destructive effects of smoking on the periodontal tissues, however, are not well understood. It has been speculated that interference with vascular and inflammatory phenomena may be one potential mechanism. Nicotine and carbon monoxide in tobacco smoke negatively influence wound healing. Smoking research over the past two decades has brought new knowledge into the domains of periodontology. Even more so, it has called into question the prevailing paradigm that the disease is primarily related to intraoral factors such as supra- and subgingival infection. Smoking research has revealed that environmental and lifestyle factors are involved in the onset and progression of the disease. Being the result of smoking, destructive periodontal disease shares a common feature with some 40 other diseases or disorders. As a consequence, periodontal disease should be regarded as a systemic disease in the same way as heart disease or lung disease. Thus, chronic destructive periodontal disease in smokers is initiated and driven by smoking. Its progression may or may not be amplified by unavoidable microbial colonization.

Alveolar Bone Loss↗