Javascript must be enabled to continue!
Clinical concepts for regenerative therapy in furcations
View through CrossRef
AbstractFurcation involvements present one of the greatest challenges in periodontal therapy because furcation‐involved molar teeth respond less favorably to conventional periodontal therapy compared with noninvolved molar or nonmolar teeth. Various regenerative procedures have been proposed and applied with the aim of eliminating the furcation defect or reducing the furcation depth. An abundance of studies and several systematic reviews have established the effectiveness of membrane therapy (guided tissue regeneration) for buccal Class II furcation involvement of mandibular and maxillary molars compared with open flap surgery. Bone grafts/substitutes may enhance the results of guided tissue regeneration. However, complete furcation closure is not a predictable outcome. Limited data and no meta‐analyses are available on the effects of enamel matrix proteins for furcation regeneration. Enamel matrix protein therapy has demonstrated clinical improvements in the treatment of buccal Class II furcation defects in mandibular molars; however, complete closure of the furcation lesion is achieved only in a minority of cases. Neither guided tissue regeneration nor enamel matrix protein therapy have demonstrated predictable results for approximal Class II and for Class III furcations. Promising preclinical data from furcation regeneration studies in experimental animals is available for growth factor‐ and differentiation factor‐based technologies, but very limited data are available from human clinical studies. Although cell‐based therapies have received considerable attention in regenerative medicine, their experimental evaluation in the treatment of periodontal furcation lesions is at a very early stage of development. In summary, the indications and the limitations for currently available treatment modalities for furcation defects are well established. New regenerative treatments are clearly needed to improve the predictability of a complete resolution of furcation defects.
Title: Clinical concepts for regenerative therapy in furcations
Description:
AbstractFurcation involvements present one of the greatest challenges in periodontal therapy because furcation‐involved molar teeth respond less favorably to conventional periodontal therapy compared with noninvolved molar or nonmolar teeth.
Various regenerative procedures have been proposed and applied with the aim of eliminating the furcation defect or reducing the furcation depth.
An abundance of studies and several systematic reviews have established the effectiveness of membrane therapy (guided tissue regeneration) for buccal Class II furcation involvement of mandibular and maxillary molars compared with open flap surgery.
Bone grafts/substitutes may enhance the results of guided tissue regeneration.
However, complete furcation closure is not a predictable outcome.
Limited data and no meta‐analyses are available on the effects of enamel matrix proteins for furcation regeneration.
Enamel matrix protein therapy has demonstrated clinical improvements in the treatment of buccal Class II furcation defects in mandibular molars; however, complete closure of the furcation lesion is achieved only in a minority of cases.
Neither guided tissue regeneration nor enamel matrix protein therapy have demonstrated predictable results for approximal Class II and for Class III furcations.
Promising preclinical data from furcation regeneration studies in experimental animals is available for growth factor‐ and differentiation factor‐based technologies, but very limited data are available from human clinical studies.
Although cell‐based therapies have received considerable attention in regenerative medicine, their experimental evaluation in the treatment of periodontal furcation lesions is at a very early stage of development.
In summary, the indications and the limitations for currently available treatment modalities for furcation defects are well established.
New regenerative treatments are clearly needed to improve the predictability of a complete resolution of furcation defects.
Related Results
Detailed Analysis of Regenerative Energy when the Electric Bus Driving on Expressways
Detailed Analysis of Regenerative Energy when the Electric Bus Driving on Expressways
Electric vehicles have many advantages over traditional ICE (internal combustion engine) vehicles, such as zero emissions, noise and vibration reduction, and excellent acceleration...
The Complementary Roles of Neurological and Musculoskeletal Physical Therapy and Regenerative Medicine: A Comprehensive Review
The Complementary Roles of Neurological and Musculoskeletal Physical Therapy and Regenerative Medicine: A Comprehensive Review
Regenerative medicine, encompassing various therapeutic approaches aimed at tissue repair and regeneration, has emerged as a promising field in the realm of physical therapy. Aim: ...
Small Cell Lung Cancer and Tarlatamab: A Meta-Analysis of Clinical Trials
Small Cell Lung Cancer and Tarlatamab: A Meta-Analysis of Clinical Trials
Abstract
Introduction
Tarlatamab is a Delta-like ligand 3 (DLL3) -directed bispecific T-cell engager recently approved for use in patients with advanced small cell lung cancer (SCL...
Pembrolizumab and Sarcoma: A meta-analysis
Pembrolizumab and Sarcoma: A meta-analysis
Abstract
Introduction: Pembrolizumab is a monoclonal antibody that promotes antitumor immunity. This study presents a systematic review and meta-analysis of the efficacy and safety...
Biodiversity, decomposition, and CO2 emissions effects after the implementation of regenerative ditch borders in a Dutch peat agroecosystem
Biodiversity, decomposition, and CO2 emissions effects after the implementation of regenerative ditch borders in a Dutch peat agroecosystem
The majority of NW European peatlands are degraded due to management associated with conventional livestock farming (i.e. increased drainage, high nutrient inputs and frequent mowi...
Four new species of Russula subsect. Cyanoxanthinae from China (Russulales, Russulaceae)
Four new species of Russula subsect. Cyanoxanthinae from China (Russulales, Russulaceae)
Four new species of Russula subsect. Cyanoxanthinae, viz. Russula atrochermesina Y.L. Chen & J.F. Liang, R. lavandula Y.L. Chen, B. Chen & J.F. Liang, R. lilaceofusca Y.L. ...
<b>Awareness and Adoption of Regenerative Dentistry among Dental Students and Practitioners in Pakistan: A Cross-sectional Study</b>
<b>Awareness and Adoption of Regenerative Dentistry among Dental Students and Practitioners in Pakistan: A Cross-sectional Study</b>
Background: Regenerative dentistry, an emerging branch of dental science, focuses on biological restoration of oral tissues using advanced techniques such as stem cell therapy, tis...
Regenerative Agriculture Augments Bacterial Community Structure for a Healthier Soil and Agriculture
Regenerative Agriculture Augments Bacterial Community Structure for a Healthier Soil and Agriculture
AbstractUse of chemical fertilization and pesticides not only harm the environment but also have detrimental consequences on human health. In recent years, there has been a major e...

