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Effect of CO2 Laser on Enamel White Spot Lesion Formation Around Orthodontic Brackets

Evaluation of Enamel Resistance to White Spot Lesion Formation Around Orthodontic Brackets After CO2 Laser Irradiation: A Randomized Controlled Clinical Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03114475
Enrollment
25
Registered
2017-04-14
Start date
2016-06-15
Completion date
2017-09-30
Last updated
2017-10-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

White Spot Lesion

Brief summary

This study aims to evaluate the clinical effect of CO2 laser on enamel resistance to white spot lesions formation around orthodontic brackets. 25 patients needing fixed orthodontic treatment will participate in the study, the CO2 laser will be applied in a split mouth design around orthodontic brackets in two contrast quarters of mouth in every patient and the other quarters will serve as a control. The white spot lesion formation will be monitored around the brackets during the orthodontic treatment after four and twelve weeks of irradiation with laser.

Detailed description

Prior to enrollment of each subject into the study, they will be examined completely to determine the orthodontic treatment plan. The operator will inform them about the aim of the study and ask them to provide a written informed consent. Before brackets' bonding (T0) the operator will evaluate with intraoral clinical examination and take intraoral photographs and evaluate with DIAGNOdent. Then after brackets' placement on teeth, the CO2 laser will be applied to the area of enamel about 2 mm of width around orthodontic brackets in a split mouth design. To blind the intervention sides on patients the control sides will receive nontherapeutic light. Then intraoral photographs will be taken and the teeth will be assessed with DIAGNOdent (T1). All patients will be trained to brush their teeth with a tooth paste containing 1100 ppm of fluoride twice a day. After 4 weeks of irradiation (T2) the patients will be examined for white spot lesions formation by clinical examination using Geiger index, photographic examination using AutoCAD 2009 evaluating formation and area percentage of white spot lesions, and the degree of demineralization will be assessed with DIAGNOdent. The all exams will also be done after 12 weeks of irradiation (T3).

Interventions

RADIATIONCO2 laser irradiation

CO2 laser irradiation will be applied onto the enamel surrounding the orthodontic bracket

OTHERPlacebo

No irradiation is going to be applied in the intervention. Just a red light will be used as placebo.

Sponsors

Damascus University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Masking description

The non-irradiated side of the mouth will receive a placebo light (i.e. not the laser beam).

Intervention model description

Split mouth design, the mouth will be split into four quadrants. Two quadrants will receive the active treatment, whereas the opposing two quadrants will receive the placebo.

Eligibility

Sex/Gender
ALL
Age
15 Years to 25 Years
Healthy volunteers
No

Inclusion criteria

* Adult patients with permanent occlusion at age 15-25 years. * No previous orthodontic treatment * Good oral hygiene * Need to orthodontic treatment with fixed appliances

Exclusion criteria

* Patients with systemic diseases or syndromes * Patients with existence of enamel fluorosis * Patients with existence of amelogenesis imperfecta or hypocalcified enamel * Patients with existence of restorations or crowns or carious lesions on the labial surfaces of teeth. * Patients who received fluoride treatment within the last three months prior to being enrolled in the study.

Design outcomes

Primary

MeasureTime frameDescription
Change in White Formation Status we will evaluate the degree of demineralization by DIAGNOdent Pen around the orthodontic brackets.The status of white spot formation will be judged at 10 minutes before taking the impressions (T0), five minutes following brackets' placement and irradiation (T1), at four weeks after laser irradiation (T2) and at twelve weeks after irradiation (T3)This will depend on the presence or absence of white spot formation assessed clinically.
Change in the Extent of White Spot FormationExtent of white spot formation will be measured 10 minutes before taking the impressions (T0), five minutes following brackets' placement and irradiation (T1), at four weeks after laser irradiation (T2) and at twelve weeks after laser irradiation (T3)This will be assessed clinically using Geiger index (Step 1: no white spot lesions, Step 2: the white spot lesion is less than the third of the tooth surface area, Step 3: the white spot lesion is more than the third of the tooth surface area, Step 4: severe white spot lesions and caries)
Change in the Percentage of White Spot Lesion AreaPercentage of white spot lesion area will be assessed at 10 minutes before taking the impressions (T0), five minutes following brackets' placement and irradiation (T1), at four weeks after irradiation (T2) and at twelve weeks after irradiation (T3)This will be assessed using digital images.The percentage of white spot lesion area to the area of the labial surface of the tooth on digital images will be calculated using AutoCAD 2013 program.
Change in the degree of demineralizationThe degree of demineralization will be evaluated at: t 10 minutes before taking the impressions (T0), five minutes following brackets' placement and irradiation (T1), at four weeks after irradiation (T2) and at twelve weeks after irradiation (T3)The degree of demineralization will be evaluated by DIAGNOdent Pen around the orthodontic brackets.

Countries

Syria

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 23, 2026