Dental Caries Clinical Trial
— CUBSOfficial title:
Health Effects of Dental Composites in Children
| Verified date | March 2015 |
| Source | New England Research Institutes |
| Contact | n/a |
| Is FDA regulated | No |
| Health authority | United States: Institutional Review Board |
| Study type | Interventional |
The Composites and Urinary Bisphenol-A Study (CUBS) is a clinical study of dental composite for its effects on urinary bisphenol-A levels. The study will enroll approximately 139 children recruited from study-affiliated clinical sites in New England.The primary aim of CUBS is to test the hypothesis that urinary bisphenol-A (BPA) concentrations increase after composite restoration placement. BPA is a chemical used in the synthesis of matrix monomers and has been shown to have harmful effects in toxicological studies in laboratory animals. Currently it is unknown whether dental composite restorative materials containing monomers that are derived from BPA result in chronic low-dose BPA exposure in children.
| Status | Completed |
| Enrollment | 113 |
| Est. completion date | June 2014 |
| Est. primary completion date | June 2014 |
| Accepts healthy volunteers | No |
| Gender | Both |
| Age group | 3 Years to 17 Years |
| Eligibility |
Inclusion Criteria: - Aged 3-16 (<17) years at enrollment. - 2+ posterior teeth with caries requiring restorations treatable by composite. - Toilet-trained (not using diapers, pull-ups, or training pants during day or night). Exclusion Criteria: - Medical conditions that would render the subject physically unable to provide urine samples. - Guardian is not proficient in spoken English or Spanish language - Child is aged 8.0 years or older and not proficient in spoken English or Spanish language - Living >35 miles outside of the dental clinic or the NERI office (Watertown MA) |
Endpoint Classification: Pharmacokinetics Study, Intervention Model: Single Group Assignment, Masking: Open Label, Primary Purpose: Treatment
| Country | Name | City | State |
|---|---|---|---|
| United States | New England Research Institutes, Inc. | Watertown | Massachusetts |
| Lead Sponsor | Collaborator |
|---|---|
| New England Research Institutes | Harvard School of Public Health, National Institute of Environmental Health Sciences (NIEHS) |
United States,
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | Change in Urinary Bisphenol A Level (BPA) From Baseline to 6 Months | BPA was measured, corrected for specific gravity, in ng/mL. We corrected BPA for specific gravity (SG) using the formula: BPA * [(meanSG - 1)/(SG - 1)], where meanSG is the mean of the SG for the samples examined. Urine samples were collected twice pre-treatment and the geometric mean of BPA at each pre-treatment visit was used as the baseline BPA. Change in BPA was computed using BPA at follow-up minus BPA at baseline. Analysis of change in BPA was done using the arithmetic mean. | From Baseline to 6 months | Yes |
| Primary | Change in Urinary Bisphenol A Level (BPA) From Baseline to 1 Day After the First Dental Treatment | BPA was measured, corrected for specific gravity, in ng/mL. We corrected BPA for specific gravity (SG) using the formula: BPA * [(meanSG - 1)/(SG - 1)], where meanSG is the mean of the SG for the samples examined. Urine samples were collected twice pre-treatment and the geometric mean of BPA at each pre-treatment visit was used as the baseline BPA. Change in BPA was computed using BPA at 1 day after the first dental treatment minus BPA at baseline. The first dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically within a few weeks of baseline. Analysis of change in BPA was done using the arithmetic mean. | From Baseline to 1 day after the first dental treatment (The first dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically within a few weeks of baseline.) | No |
| Primary | Change in Urinary Bisphenol A Level (BPA) From Baseline to 14 Days After the First Dental Treatment | BPA was measured, corrected for specific gravity, in ng/mL. We corrected BPA for specific gravity (SG) using the formula: BPA * [(meanSG - 1)/(SG - 1)], where meanSG is the mean of the SG for the samples examined. Urine samples were collected twice pre-treatment and the geometric mean of BPA at each pre-treatment visit was used as the baseline BPA. Change in BPA was computed using BPA at 14 days after the first dental treatment minus BPA at baseline. The first dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically within a few weeks of baseline. Analysis of change in BPA was done using the arithmetic mean. | From Baseline to 14 days after the first dental treatment (The first dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically within a few weeks of baseline.) | No |
| Primary | Change in Urinary Bisphenol A Level (BPA) From Baseline to 1 Day After the Second Dental Treatment | BPA was measured, corrected for specific gravity, in ng/mL. We corrected BPA for specific gravity (SG) using the formula: BPA * [(meanSG - 1)/(SG - 1)], where meanSG is the mean of the SG for the samples examined. Urine samples were collected twice pre-treatment and the geometric mean of BPA at each pre-treatment visit was used as the baseline BPA. Change in BPA was computed using BPA at 1 day after the second dental treatment minus BPA at baseline. The second dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically 3-4 weeks after the first dental treatment. Analysis of change in BPA was done using the arithmetic mean. | From Baseline to 1 day after the second dental treatment (The second dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically 3-4 weeks after the first dental treatment.) | No |
| Primary | Change in Urinary Bisphenol A Level (BPA) From Baseline to 14 Days After the Second Dental Treatment | BPA was measured, corrected for specific gravity, in ng/mL. We corrected BPA for specific gravity (SG) using the formula: BPA * [(meanSG - 1)/(SG - 1)], where meanSG is the mean of the SG for the samples examined. Urine samples were collected twice pre-treatment and the geometric mean of BPA at each pre-treatment visit was used as the baseline BPA. Change in BPA was computed using BPA at 14 days after the second dental treatment minus BPA at baseline. The second dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically 3-4 weeks after the first dental treatment. Analysis of change in BPA was done using the arithmetic mean. | From Baseline to 14 days after the second dental treatment (The second dental treatment was scheduled as per treatment needs and the schedules of the dentist and patient. It was typically 3-4 weeks after the first dental treatment.) | No |
| Status | Clinical Trial | Phase | |
|---|---|---|---|
| Completed |
NCT04127929 -
Investigation of Glass Carbomer Performance
|
N/A | |
| Completed |
NCT04769882 -
Er:YAG Laser Effects on Microbial Population in Conservative Dentistry
|
N/A | |
| Completed |
NCT04971317 -
The Influence of Simple, Low-Cost Chemistry Intervention Videos: A Randomized Trial of Children's Preferences for Sugar-Sweetened Beverages
|
N/A | |
| Active, not recruiting |
NCT04475679 -
Clinical Evaluation of Adhese Universal DC in the Indirect Restorative Therapy
|
N/A | |
| Completed |
NCT05438381 -
Comparison of Clinical and Radiographic Outcomes of SMART Technique vs ART in Primary Molars
|
N/A | |
| Not yet recruiting |
NCT03037814 -
Clinical Performance of Restorative Materials in Primary Teeth
|
N/A | |
| Active, not recruiting |
NCT05202665 -
Resin Infiltration and Fluoride Varnish Lesion Arresting Efficacy on Non-cavitated Proximal Lesion
|
N/A | |
| Terminated |
NCT01147835 -
Herbal Lollipops on Oral Bacterial Levels and DMFT/Dmft Scores of Children With Asthma Using Inhalers
|
N/A | |
| Not yet recruiting |
NCT04033263 -
Maintaining Oral Health With Bio-products
|
N/A | |
| Enrolling by invitation |
NCT04438252 -
Evaluation of Reliability of CarieScan PRO Compared With Digital Radiograph and ICDAS-II in Detection of Carious Lesions
|
N/A | |
| Not yet recruiting |
NCT03609034 -
Knowledge, Attitude and Practice of a Group of Egyptian Dental Interns Toward Caries Risk Assessment
|
||
| Completed |
NCT02912000 -
TEACH: Technology Evaluation to Address Child Health
|
N/A | |
| Completed |
NCT02473107 -
Impact of Detecting Initial and Active Caries Lesions in Primary Teeth
|
N/A | |
| Active, not recruiting |
NCT02537184 -
Impact of Two Recall Intervals on Dental Caries Incidence and Other Outcomes of Preschool Children
|
N/A | |
| Completed |
NCT01950546 -
Nanosilver Fluoride to Prevent Dental Biofilms Growth
|
Phase 1 | |
| Recruiting |
NCT02734420 -
Effect of Photodynamic Therapy With Low-level Laser on Infected Dentin in Primary Teeth: A Controlled Clinical Trial
|
Phase 1 | |
| Completed |
NCT02020681 -
Effect of Curodont Repair or Placebo on the Remineralisation in Patients With Class 5 Carious Lesions
|
N/A | |
| Completed |
NCT02426619 -
Arresting Active Dental Caries in Preschool Children by Topical Fluorides
|
Phase 2/Phase 3 | |
| Completed |
NCT02234609 -
Effectiveness of Modified Class IV Atraumatic Restorative Treatment
|
N/A | |
| Completed |
NCT01623362 -
Evaluation of a Low Fluoride Dentifrice for Caries Control
|
Phase 3 |