Clinical Trials Directory

Trials / Completed

CompletedNCT03951636

Non Surgical Protocol for Treatment of Mucositis

Non Surgical Protocol for Treatment of Mucositis Using an Er:YAG Laser or an Air-abrasive Device: a Randomized Clinical Trial

Status
Completed
Phase
N/A
Study type
Interventional
Enrollment
75 (actual)
Sponsor
Università Vita-Salute San Raffaele · Academic / Other
Sex
All
Age
18 Years – 100 Years
Healthy volunteers
Accepted

Summary

Peri-implant mucositis is an important disease entity as a result of its high prevalence and the lack of a standard mode of therapy. Non-surgical therapy of peri-implant mucositis appears to be partially effective in resolving the disease. In several cases, however, only limited improvements have been reported in the main clinical parameters (bleeding partial resolution and presence of pocket at follow-up visits) and there is a clear tendency to relapse of the disease. In these cases it is therefore recommended to consider adjunctive therapies. Numerous approaches have been used for implant surface decontamination including mechanical, chemical and treatments by means of air-powder or laser. The aim of the present randomized controlled clinical trial will be to assess the efficacy in improving clinical parameters of two further methods of implant surface decontamination (Er:YAG laser or air-abrasive device) after mechanical cleaning during non surgical treatment of peri-implant mucositis.

Detailed description

Peri-implant mucositis, defined as an inflammatory lesion of the surrounding peri-implant tissues without loss of supporting bone, is an important disease entity as a result of its high prevalence and the lack of a standard mode of therapy. Although the current epidemiological data are limited, peri-implant mucositis affects 43% of the subjects. Numerous approaches have been used for implant surface decontamination, including mechanical, chemical and laser treatments. Using conventional mechanical means, eradication of pathogens on implant surfaces with threads and often with rough surface structures is difficult. Treatment models, such as debridement, effectively used to treat teeth with periodontitis, cannot be used in the same way on rough threaded implant surfaces. The implant rough surface structure also provides the bacteria with ''protected areas'', inaccessible to conventional mechanical removal. A treatment protocol that may offer an advantage over traditional mechanical treatment includes the use of laser therapy. Data have shown that treatments with Er:YAG lasers have a bactericidal effect. Er:YAG laser treatment can debride the implant surface effectively and safely. Slightly better clinical results in terms of bleeding on probing and clinical attachment level have been reported by Er:YAG laser treatment as compared with traditional non-surgical mechanical debridement with curettes and chlorhexidine. The air abrasive method for the removal of bacterial plaque on tooth surfaces has also been used in the treatment of mucositis, demonstrating no relevant adverse effects. Until recently, air-polishing devices have used a slurry of water and sodium bicarbonate (NaHCO3) and pressurized air/water. A less abrasive method using an aminoacid glycine has been proven to be effective in removing bacterial biofilm structures in deep periodontal pockets and safe by not causing emphysema. Moreover the use of a glycine-based powder does not seem to cause titanium implant surface changes. The aim of the present randomized controlled clinical trial will be to assess the efficacy in improving clinical parameters of two further methods of implant surface decontamination (Er:YAG laser or air-abrasive device) after mechanical cleaning during non surgical treatment of mucositis.

Conditions

Interventions

TypeNameDescription
PROCEDUREMechanical debridement with curettesmechanical debridement: Inflammatory tissue, excess cement or plaque deposits will be removed using hand instruments
PROCEDUREEr:YAG lasermechanical debridement: Inflammatory tissue, excess cement or plaque deposits will be removed using hand instruments. Furthermore, an Er:YAG laser will be used for the implant surface decontamination.
PROCEDUREAir Powdermechanical debridement: Inflammatory tissue, excess cement or plaque deposits will be removed using hand instruments. Furthermore, an Air-Powder treatment will be provided on the implant/abutment surface.

Timeline

Start date
2019-07-02
Primary completion
2022-01-16
Completion
2022-07-27
First posted
2019-05-15
Last updated
2023-03-03

Locations

1 site across 1 country: Italy

Source: ClinicalTrials.gov record NCT03951636. Inclusion in this directory is not an endorsement.