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The relationship between probing bone loss and standardized radiographic analysis.

This study evaluated the validity of radiographic alveolar bone defect depth measurements to direct probing measurements. The study was planned in two parts. The first part consisted of the evaluation of artificially prepared defects in dry mandibles. These consisted of 3-mm intrabony defects created at the mesial aspect of the second mandibular molar and a Class II furcation defect on the buccal aspect of the first molar. A total of six standardized periapical radiographs with grids were obtained. They were then evaluated by 10 independent examiners who recorded the distance between the alveolar crest (AC) or root junction (RJ) and base of defect (BD) in the proximal and furcation areas of the teeth. Intra- and inter-examiner differences were assessed. Radiographic results showed that these measurements overestimated the mean defect depth values within 0.12 mm in intrabony defects and underestimated within 0.40 mm in Class II furcation defects. The differences between the radiographic and direct dry mandible defect depth measurements were found to be statistically significant (P < .05) with correlation values r = .50 and r = .46, respectively. The clinical part of the study included evaluation of 64 preoperative radiographs taken from patients who underwent various types of periodontal surgery. Mean clinical bone defect depth was found to be 4.20 mm and the mean of the radiographic defect depth measurements was found to be 3.92 mm in intrabony defects. In furcation defects these values were 3.92 mm and 3.55 mm, respectively. The results revealed that (1) a strong correlation existed between the radiographic and clinical assessments in both type of defects (r = .85, P < .001), and that (2) the difference between the two types of assessment methods was generally within 1 mm (58%). It can be concluded that in both dry mandible and clinical studies radiographic interpretation of the intrabony and furcation defects showed differences from the actual bone defect depths.

Adult↗

Synthetic bioabsorbable barrier for regeneration in human periodontal defects.

Guided tissue regeneration (GTR) may result in the formation of new bone, cementum, and periodontal ligament. The purpose of this study was to assess the efficacy of a resorbable synthetic material, which has been used extensively in general surgery for wound support, to promote GTR. Forty healthy patients with adult periodontitis, each having a Class II furcation defect, participated in the study. After initial therapy, mucoperiosteal flaps were elevated and furcations debrided with hand and rotary instruments. In 20 patients the molar Class II furcation defects were treated with a GTR procedure using the resorbable synthetic material (experimental), and 20 patients received a mucoperiosteal flap debridement procedure without barrier placement (control). Probing depth and attachment level measurements were taken immediately before surgery, at 6 weeks, and 2, 3, 4, 5, and 6 months after surgery. All areas healed uneventfully. Comparison of clinical attachment level measurements indicated significantly greater gain of attachment at sites receiving barriers. Fifteen of 20 Class II furcations in the synthetic barrier group, but only one of 20 in the control group, were converted to Class I defects. Barriers were still clinically detectable at 4 weeks, but were absent at 6 weeks. The synthetic barriers enhanced gain of clinical attachment in human Class II furcation defects.

Analysis of Variance↗

A clinical evaluation of a bioresorbable barrier with and without decalcified freeze-dried bone allograft in the treatment of molar furcations.

This study evaluated a bioresorbable barrier with and without decalcified freeze-dried bone allograft (DFDBA) in the treatment of human molar furcations. 14 subjects with paired class II mandibular molar furcation defects participated in the study (8 male and 6 female). The class-II furcation defects were randomly treated with either the resorbable barrier alone or resorbable barrier in combination with decalcified freeze-dried bone allograft (DFDBA). Gingival recession, probing depth, clinical attachment, and bone fill were measured 6 months post-treatment measurements were repeated and each site was surgically re-entered. When the resorbable barrier alone was compared to resorbable barrier in combination with DFDBA, probing depth reduction was significantly (p < 0.01) in favor of the combination therapy. Vertical bone gain was significant with the combination treatment demonstrating more bone fill (p < 0.02). Smoking was also a variable examined in this study. When compared to smokers, non-smokers for both treatment groups revealed greater probing depth reduction, vertical bone gain, and horizontal bone gain. Within the non-smoking group, probing depth reduction was also significantly higher for the resorbable barrier and DFDBA group than the resorbable alone group (p < 0.02). These results illustrate that the probing depth reduction is better in the non-smoker and the best in the non-smoker with the combination therapy of resorbable barrier and DFDBA than with resorbable barrier alone.

Adult↗

Equivalence and superiority testing in regeneration clinical trials.

The purpose of this report is to investigate sample size requirements for both equivalence and superiority studies investigating products used in regeneration. The goal of a superiority clinical trial is to determine if a new therapy is superior to an established therapy or placebo. In contrast to superiority trials, equivalence trials are used to determine if a new product has similar therapeutic properties to an established product. The sample sizes for the two different types of clinical trials were based on the following assumptions: an alpha of 0.05, a power of 0.80, a 2 group parallel arm study, and equal variances and sample sizes for both groups. Separate sample size calculations were done for both intrabony defects and Class II furcation defects. Sample sizes for the equivalence and superiority trials using the same criteria were the same. However, criteria for estimating sample sizes for equivalence clinical trials require much smaller differences between groups, resulting in much larger sample sizes. A criterion of a 20% difference between groups of the total therapeutic effect resulted in sample sizes which ranged from 64 to 127 in equivalence clinical trials. These samples sizes are much larger than have been generally used in clinical trials investigating periodontal regeneration.

Alveolar Bone Loss↗

Retention of multi-rooted teeth with class III furcation lesions utilizing resins. Report of 17 cases.

BACKGROUND: Treatment of periodontally diseased multi-rooted posterior teeth has conventionally consisted of scaling and root planing, apically positioned flaps, tunneling, root amputation, root resection, guided tissue regeneration, osseous grafting, and combination osseous graft and barrier membrane techniques. Successful treatment has often been directed and measured by how well the clinician obtains sufficient access to facilitate patient hygiene efforts. Long-term success is predicated upon tooth retention and the arrest of further destruction within the furcation area. METHODS: Seventeen adult periodontal patients with Class III furcation defects were evaluated. Using an open flap procedure, a resin-ionomer was placed into all 3 furcation defects. The patients were placed on quarterly maintenance appointments and the teeth evaluated up to 1 year. RESULTS: The results revealed that sealing the furcations of multi-rooted teeth with hopeless prognoses seems to be a viable alternative to accessing the same intraradicular areas for maintenance using more conventional modes of therapy. Sealing further decreases the surface area of the furca and simplifies future maintenance. CONCLUSIONS: The present study showed that teeth with hopeless prognoses might be retained by decreasing probing depths, bleeding upon probing, and mobility when furcation areas are sealed with a resin-ionomer.

Adult↗

Long-term results of guided tissue regeneration therapy with non-resorbable and bioabsorbable barriers. I. Class II furcations.

BACKGROUND: The aim of this 5-year follow-up study was to clinically and radiographically evaluate the long-term results after guided tissue regeneration (GTR) therapy of Class II furcation defects using non-resorbable and bioabsorbable barriers. METHODS: Nine pairs of contralateral Class II furcation defects were treated in 9 patients with advanced periodontitis. Within each patient, one defect received a non-resorbable (expanded polytetrafluoroethylene [ePTFE]; control, C) barrier and the other a bioabsorbable (polyglactin 910; test, T) barrier by random assignment. At baseline, 6, and 60 +/- 3 months after surgery, clinical parameters and standardized radiographs were obtained. Gain of bone density within furcation areas was assessed using subtraction radiography. RESULTS: Six and 60 months after GTR therapy, statistically significant (P <0.05) horizontal attachment (CAL-H) gain was observed in both groups (C6: 1.7 +/- 0.8 mm; C60: 1.6 +/- 1.2 mm; T6: 2.0 +/- 0.7 mm; T60: 2.2 +/- 0.9 mm). However, 1 furcation assessed as Class I six months after GTR therapy with a bioabsorbable barrier had progressed to Class III after 5 years, and in another patient, 5 years after placement of an ePTFE barrier, 1 furcation had lost all the CAL-H gain that had been observed at 6 months. Subtraction analysis revealed similar area gain in both groups 6 and 60 months postsurgically (C6: 0.3 +/- 0.5; C60 1.0 +/- 1.7; T6: 0.4 +/- 0.4; T60: 1.1 +/- 1.7). CONCLUSIONS: CAL-H gain achieved after GTR therapy in Class II furcations was stable after 5 years in 16 of 18 defects. The study failed to show a statistically significant difference in stability of CAL-H gain between control and test groups 5 years after GTR therapy.

Absorbable Implants↗

The efficacy of bone replacement grafts in the treatment of periodontal osseous defects. A systematic review.

BACKGROUND: Bone replacement grafts (BRG) are widely used in the treatment of periodontal osseous defects; however, the clinical benefits of this therapeutic practice require further clarification through a systematic review of randomized controlled studies. RATIONALE: The purpose of this systematic review is to access the efficacy of bone replacement grafts in proving demonstrable clinical improvements in periodontal osseous defects compared to surgical debridement alone. FOCUSED QUESTION: What is the effect of bone replacement grafts compared to other interventions on clinical, radiographic, adverse, and patient-centered outcomes in patients with periodontal osseous defects? SEARCH PROTOCOL: The computerized bibliographical databases MEDLINE and EMBASE were searched from 1966 and 1974, respectively, to October 2002 for randomized controlled studies in which bone replacement grafts were compared to other surgical interventions in the treatment of periodontal osseous defects. The search strategy included screening of review articles and reference lists of retrieved articles as well as hand searches of selected journals. INCLUSION CRITERIA: All searches were limited to human studies in English language publications. EXCLUSION CRITERIA: Non-randomized observational studies (e.g., case reports, case series), publications providing summary statistics without variance estimates or data to permit computation, and studies without BRG intervention alone were excluded. DATA COLLECTION AND ANALYSIS: The therapeutic endpoints examined included changes in bone level, clinical attachment level, probing depth, gingival recession, and crestal resorption. For purposes of meta-analysis, change in bone level (bone fill) was used as the primary outcome measure, measured upon surgical re-entry or transgingival probing (sounding). MAIN RESULTS: 1. Forty-nine controlled studies met eligibility criteria and provided clinical outcome data on intrabony defects following grafting procedures. 2. Seventeen studies provided clinical outcome data on BRG materials for the treatment of furcation defects. REVIEWERS' CONCLUSIONS: 1. With respect to the treatment of intrabony defects, the results of meta-analysis supported the following conclusions: 1) bone grafts increase bone level, reduce crestal bone loss, increase clinical attachment level, and reduce probing depth compared to open flap debridement (OFD) procedures; 2) No differences in clinical outcome measures emerge between particulate bone allograft and calcium phosphate (hydroxyapatite) ceramic grafts; and 3) bone grafts in combination with barrier membranes increase clinical attachment level and reduce probing depth compared to graft alone. 2. With respect to the treatment of furcation defects, 15 controlled studies provided data on clinical outcomes. Insufficient studies of comparable design were available to submit data to meta-analysis. Nonetheless, outcome data from these studies generally indicated positive clinical benefits with the use of grafts in the treatment of Class II furcations. 3. With respect to histological outcome parameters, 2 randomized controlled studies provide evidence that demineralized freeze-dried bone allograft (DFDBA) supports the formation of a new attachment apparatus in intrabony defects, whereas OFD results in periodontal repair characterized primarily by the formation of a long junctional epithelial attachment. Multiple observational studies provide consistent histological evidence that autogenous and demineralized allogeneic bone grafts support the formation of new attachment. Limited data also suggest that xenogenic bone grafts can support the formation of a new attachment apparatus. In contrast, essentially all available data indicate that alloplastic grafts support periodontal repair rather than regeneration. 4. The results of this systematic review indicate that bone replacement grafts provide demonstrable clinical improvements in periodontal osseous defects compared to surgical debridement alone.

Alveolar Bone Loss↗

A combined surgical and orthodontic treatment of Class III furcations. Report of a case.

Oral hygiene in furcation defects of upper molars is difficult to achieve. In this case report, a combined surgical and orthodontic treatment procedure is presented to facilitate access and plaque control in furcation areas of upper molars with class-III furcation defects. After endodontic treatment and root resection in an upper 1st molar, the remaining mesiobuccal and palatal roots were separated and aligned orthodontically within the dental arch, as one-rooted teeth. The new morphological position of the roots greatly facilitated oral hygiene and may offer a better long-term prognosis.

Dental Plaque↗

The effect of cigarette smoking on the long-term success of guided tissue regeneration: a preliminary study.

Regenerative therapy has provided the clinician with an alternative to traditional procedures such as osseous surgery. However, there is a deficiency of data and research on long-term success of guided tissue regeneration (GTR). The purpose of this paper is to report the findings of a preliminary long-term clinical study of GTR in Class II furcation defects. In a private practice setting, 38 e-PTFE barrier membranes were placed in 38 periodontal Class II furcation lesions in patients diagnosed with chronic adult periodontitis (1 defect per patient). These patients were followed from 4 to 7 years. There were 21 maxillary Class II furcation defects and 17 mandibular Class II furcation defects. All patients had a non-contributory medical history; however, in retrospective examination, many of these patients smoked at least 10 cigarettes per day for at least 5 years. In this study, results after 4 to 7 years revealed a 58 per cent success rate and a 42 per cent failure rate: 80 per cent of the failures were in smokers. In this study, GTR in furcation defects was not as successful as previously reported in the literature from a clinical point of view and the success rate was significantly lower when a patient was a smoker.

Adult↗

Scanning electron microscopic observations of cell populations and bacterial contamination of membranes used for guided periodontal tissue regeneration in humans.

Fourteen intrabony periodontal defects and six furcation defects (Class II) were treated by a flap procedure which included the use of a polytetrafluoroethylene membrane to allow guided tissue regeneration. After 4 to 6 weeks of healing, the membranes were retrieved and examined by scanning electron microscopy for the presence of adherent cells and other tissue elements. The cervical open pore-structured collar of the membrane, which in most cases had become partially exposed to the oral cavity, had a deposit of bacterial plaque. Bacterial Bacterial colonies and a scatter of single cells in some instances extended into the mid-third of the membrane. Fibroblast-like cells and, in some specimens, blood vessels and fibrous structures were seen in the mid-third and deep parts of the membrane. Generally, however, the occlusive portion of the membrane was characterized by a sparseness of adherent tissue elements. There did not seem to be a systematic difference in the nature and distribution of the adherent structures on the inner and outer surfaces of the membrane. The findings suggest that, in addition to preventing flap tissues from contacting the root surface, an important function of the membrane is to protect the integrity of the underlying blood clot by diverting mechanical stress acting on the flap during early stages of healing.

Bacteria↗

Treatment of class II furcation involvements in humans with bioresorbable and nonresorbable guided tissue regeneration barriers. A randomized multi-center study.

In this multi-center study 38 patients with contralateral molar Class II furcation defects were treated with GTR therapy using a bioresorbable matrix barrier (test) and a nonresorbable expanded polytetrafluoroethylene (ePTFE) barrier (control). Following flap elevation, scaling, root planing, and removal of granulation tissue, each device was adjusted to cover the furcation defect. The flaps were repositioned and sutured to complete coverage of the barriers. A second surgical procedure was performed at control sites after 4 to 6 weeks to remove the nonresorbable barrier. Before treatment and 12 months postsurgery all patients were examined and probing depths, clinical attachment levels, and position of the gingival margin were recorded. The primary response variable was the change in clinical attachment level in a horizontal direction (CAL-H change). Both treatment procedures reduced the probing depths (P < or = 0.001). Statistically significant gain of clinical attachment level in both horizontal and vertical direction was found at the test sites. At control sites gain of attachment in horizontal direction was statistically significant. The gain of CAL-H was 2.2 mm at test sites compared to 1.4 mm at control sites (P < or = 0.05). At test sites, the gingival margin was maintained close to the pre-surgical level (0.3 mm), whereas at control sites gingival recession was evident (0.9 mm), the difference being statistically significant (P < or = 0.01). Postsurgical complications, such as swelling and pain were more frequent following the control treatment (P < or = 0.05).

Adult↗

Periodontal tissue regeneration by combined applications of recombinant human osteogenic protein-1 and bone morphogenetic protein-2. A pilot study in Chacma baboons (Papio ursinus).

Native and recombinant human bone morphogenetic/osteogenic proteins (BMPs/ OPs) singly initiate bone induction in vivo. The finding of synchronous but spatially different BMPs/OPs expression during periodontal tissue morphogenesis suggests novel therapeutic approaches using morphogen combinations based on recapitulation of embryonic development. Twelve furcation defects prepared in the first and second mandibular molars of three adult baboons (Papio ursinus) were used to assess whether qualitative histological aspects of periodontal tissue regeneration could be enhanced and tissue morphogenesis modified by combined or single applications of recombinant hOP-1 and hBMP-2. Doses of BMPs/OPs were 100 microg of each protein per 1 g of insoluble collagenous bone matrix as carrier. Approximately 200 mg of carrier matrix was used per furcation defect. Undecalcified sections cut for histological analysis 60 d after healing of hOP-1-treated specimens showed substantial cementogenesis with scattered remnants of the collagenous carrier. hBMP-2 applied alone induced greater amounts of mineralized bone and osteoid when compared to hOP-1 alone or to combined morphogen applications. Combined applications of hOP-1 and hBMP-2 did not enhance alveolar bone regeneration or new attachment formation over and above the single applications of the morphogens. The results of this study, which is the first to attempt to address the structure-activity relationship amongst BMP/OP family members, indicate that tissue morphogenesis induced by hOP-1 and hBMP-2 is qualitatively different when the morphogens are applied singly, with hOP-1 inducing substantial cementogenesis. hBMP-2 treated defects, on the other hand, showed limited cementum formation but a temporal enhancement of alveolar bone regeneration and remodelling. The demonstration of therapeutic mosaicism in periodontal regeneration will require extensive testing of ratios and doses of recombinant morphogen combinations for optimal tissue engineering in clinical contexts.

Alveolar Process↗

Observer variation in the radiographic assessment of the bone level on the buccal and lingual surfaces of mandibular molars.

OBJECTIVES: To assess accuracy and precision of observers' diagnostic performance in locating the buccal/lingual bone level using conventional periapical radiographs. METHODS: Standardized radiographs of molar regions of 10 dried mandibles were obtained. The bone crest on buccal and lingual surfaces of first and second molars was then marked with thin lead foil strips and fresh radiographs taken. A series of increasingly extensive furcation defects was created by sequential bone removal and radiographs with and without markers obtained after each step. The radiographs without indicators were presented to 10 observers on two separate occasions and the most apically located bone level marked on a transparent film. The distance between observers' markings and 'true' bone level on the radiographs was determined. RESULTS: There was wide interobserver variation which increased as the bone loss increased. Lack of consistency was largely attributable to intra-observer variation except when a furcation defect was present. The underestimation of bone loss became more marked as the amount of bone loss increased. CONCLUSIONS: Radiographic determination of bone loss on buccal and lingual surfaces is associated with a considerable lack of accuracy and precision, both of which get worse as bone loss increases.

Alveolar Bone Loss↗

Platelet-derived growth factor-modulated guided tissue regenerative therapy.

The goal of this study was to develop an effective regenerative therapy capable of achieving periodontal regeneration of Class III furcation defects. We attempted to achieve this goal by combining three therapeutic approaches. First, the lesion was protected by an expanded polytetrafluoroethylene barrier membrane that prevents migration of gingival fibroblasts as well as osteogenic cells from the mucoperiosteal flaps. Second, platelet-derived growth factor-BB (PDGF-BB), which has potent chemotactic and mitogenic effects on periodontal ligament fibroblasts (PDL), was used to promote migration of fibroblasts and their proliferation on the root surface. Third, the root surface, demineralized by citric acid conditioning, was chosen as the primary site for PDGF-BB application. The demineralized root surface appeared to have the capability of providing a sustained release of the applied growth factor. This seemed to facilitate rapid repopulation of PDL fibroblasts on the root surface and new PDL formation in the early stages of repair, which contributed to complete periodontal regeneration without root resorption and ankylosis in later stages. Combining these approaches, we developed a therapy referred to as "PDGF-modulated guided tissue regenerative therapy." Unlike guided tissue regenerative therapy alone (without PDGF-BB), this therapy effectively promoted periodontal regeneration of Class III furcation defects in the beagle dog without significant ankylosis or root resorption.

Animals↗

Clinical evaluation of guided tissue regeneration in the treatment of maxillary class II molar furcation invasions.

This investigation assessed and compared the clinical efficacy of combined open flap debridement/occlusive membrane therapy versus open flap debridement therapy alone, in the treatment of maxillary periodontal furcation defects. Seventeen patients presenting with advanced adult periodontitis, including at least one pair of Class II maxillary furcal defects, comprised the study group. Following completion of a hygienic phase of treatment, measurements were made with calibrated periodontal probes to determine soft tissue recession, probing pocket depths, and attachment levels. Each pair of furcation defects was surgically exposed and hard tissue measurements obtained. Defects were treated with either open flap debridement and a polytetrafluoroethylene periodontal membrane or open flap debridement alone. Membranes were removed at 4 to 6 weeks. Six months postsurgery, soft tissue measurements were repeated and all sites were surgically re-entered to obtain hard tissue measurements. No statistically significant differences were found in recession, probing depth reductions, clinical attachment gains, or resorption of alveolar crest height between test and control groups. Results for these parameters were inconsistent and unpredictable. Statistically significant improvements were found, however, in horizontal open probing attachment (HOPA) and vertical open probing attachment (VOPA) between experimental and control sites. The GTR procedure as used in this study likely has limited application as a therapeutic modality for Class II furcations of maxillary molars. Modifications or improvements in the procedure may result in more predictable healing of these lesions.

Adult↗

Class II furcations treated by guided tissue regeneration in humans: case reports.

In the cases reported here, the response of Class II mandibular molar furcation defects to guided tissue regeneration (GTR) versus sham operation was evaluated. Base-line information, including probing pocket depth (PD) and clinical attachment level (CAL) measurements, was recorded after completion of the hygienic phase. Eleven experimental and six control furcations, randomly assigned, are included in this report. The furcations were surgically exposed, using a flap approach and the areas were debrided. On the experimental teeth, Gore-Tex periodontal material was adapted and sutured, using a suspensory suture. The flaps were then sutured tightly, assuring complete coverage to the material. For 1 month all patients were seen weekly and rinsed their mouths with an 0.12% chlorhexidine solution daily. After 4 to 6 weeks the Gore-Tex membranes were removed. Clinical measurements were repeated at 3 and 6 months following surgery. Changes from baseline in PD and CAL were calculated for each case. Results indicated that PD measurements were reduced by both procedures, but the reduction was better for GTR at 3 and 6 months. At six months the test sites showed 2.8 +/- 1.0 mm pocket reduction, while the control sites showed an average of 1.6 +/- 0.9 mm reduction in pocket depth. CAL recordings were improved by both treatments, but were better for GTR at 6 months, with an average gain in CAL of 1.8 mm for the GTR and 0.6 mm for the controls. These cases in which GTR was compared to sham-operated controls indicate that GTR can improve the response to therapy of Class II furcation defects.

Adult↗

[Guided tissue regeneration in degree III furcation involved teeth].

Present investigation was designed to evaluate the regenerative potential of the periodontal ligament tissue in degree III furcation defects. The upper 2. and 3. premolar teeth of 3 dogs were used. Periodontal breakdown was induced around the teeth by experimental periodontitis model. After the breakdown occurred, mucoperiostal flaps were elevated and granulation tissue removed. The roots were curretted and cementum of the periodontitis involved parts of the roots was removed. The resorbable material was trimmed to approximate size needed to cover the root surfaces. The material provisionally adapted to the both buccal and palatinal root surfaces and flaps were sutured. After 42 days of post operative period histological examination of experimental and control groups showed that chances of obtaining new connective tissue attachment may be enhanced in treatment of Cl III furcation defect by Guided Tissue Regeneration.

Animals↗

Treatment of Class II furcations with autogenous bone grafts and e-PTFE membranes.

This article reports a successful clinical regimen of treatment for the Class II furcation defect. Twenty-eight patients with molar teeth demonstrating Class II furcations were treated with regenerative therapy with the goal of regenerating lost interradicular periodontium. The treatment selected included scaling and root planing, surgical flap design that would enable the flap to completely cover the surgical site, complete enucleation of granulation tissue, tetracycline root conditioning, a particulate autogenous bone graft, and an expanded polytetrafluoroethylene (e-PTFE) membrane. Of the twenty-eight consecutive patients treated, twenty-five demonstrated no postoperative clinical evidence of furcation invasion, for a success rate of 89%. Eleven sites were reopened 8 to 9 months postsurgical and presented complete furcation fill with a hard, bone-like tissue. Three teeth were judged to be failures because clinical assessment revealed persistent furcation invasion. The absence of histologic evidence precludes the presumption that complete periodontal regeneration occurred.

Anti-Bacterial Agents↗