3D-printed Endocrowns Versus Prefabricated Zirconia Crowns in Pulpally-treated Primary Molars
NCT ID: NCT04909827
Last Updated: 2023-07-20
Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
Get a concise snapshot of the trial, including recruitment status, study phase, enrollment targets, and key timeline milestones.
COMPLETED
PHASE4
30 participants
INTERVENTIONAL
2021-09-01
2023-02-28
Brief Summary
Review the sponsor-provided synopsis that highlights what the study is about and why it is being conducted.
to compare between 3D printed microfilled hybrid composite endocrowns and prefabricated zirconia crowns for restoring pulpally treated primary molars regarding the following aspects: In Vivo aspects Patient satisfaction
\*The esthetic, functional and biological performance according to FDI clinical criteria. At 3, 6 and 12 months
In Vitro aspects:
* Marginal gap.
* Fracture resistance.
Study methodology:
This study is a combined randomized clinical trial and in vitro study .The study will be conducted at the Department of Pediatric Dentistry and Dental Public Health, Faculty of Dentistry,
Ain Shams University as follows:
In vivo comparison of the clinical performance of 3D printed Endocrowns versus prefabricated zirconia crowns regarding esthetic, functional and biological performance according to FDI clinical criteria. In vitro evaluation of the marginal gap and fracture resistance of both types of restorations.
Related Clinical Trials
Explore similar clinical trials based on study characteristics and research focus.
3D-printed Crowns Versus Zirconia Crowns for Primary Molars
NCT06068244
Custom-Made Zirconia Crowns and 3D-Printed Resin Crowns Versus Ready-Made Zirconia Crowns in Primary Molars
NCT06581510
Comparative Study Between Zirconia Crowns and Endocrowns in Pulpotomized Primary Molars
NCT04073901
Digital Crowns Versus Prefabricated Crowns on Primary Teeth
NCT06305845
Clinical Evaluation of Polymethyl Methacrylate CAD/CAM Crowns Versus Prefabricated Zirconia Crowns in Primary Molars
NCT06113770
Detailed Description
Dive into the extended narrative that explains the scientific background, objectives, and procedures in greater depth.
In-vivo Phase:
Study Population:
A total of thirty primary mandibular molars in healthy subjects will be selected from the Pediatric Dentistry and Dental Public Health outpatient clinic, Faculty of Dentistry, Ain Shams University. Randomization The molars will be assigned to one of the 2 groups using a generated computer list Allocation The molars will be allocated to the groups via a third party not involved with the study They will have the generated list and inform the allocation accordingly Blinding Is not possible due to the obvious difference between the 2 Pulpotomy procedure for both groups:
1. Local anesthesia will be administered.
2. Teeth will be isolated by a Rubber Dam.
3. Teeth will undergo pulpotomy procedure' as follows:
Caries will be removed using a large size 4 round bur, mounted onto a high speed hand piece with constant coolant. All access cavity walls are to be flared to allow complete exposure of the pulp chamber, and easy undisturbed access to the canals, followed by removal of all the soft pulpal tissue tags by a sharp spoon shaped excavator. Bleeding will be controlled using moist cotton pellet with gentle pressure. Formocresol will be applied through a cotton pellet for 5 mins, for fixation. The pulp chamber will be filled with reinforced zinc oxide and eugenol ( that will be mixed according to manufacturer s instructions. A 0.5 mm layer of Resin modified glass ionomer is then applied to the cavity floor and light cured for 40 secs, to isolate the zinc oxide eugenol paste, and block unwanted undercuts Analgesics will be prescribed to the patient to be taken when needed
Intervention :group A:
1. The cavities will be prepared so as to receive endocrowns:
Occlusal preparation: achieved by drilling, 2mm depth grooves using diamond stone as guides for reduction of the occlusal surface. axial preparation: using a 7 degree taper diamond stone, eliminating undercuts in the access cavity.
2. impression for the preparation is taken using putty and light poly vinyl siloxane material
3. Light cured temporary filling will be placed in the cavity as temporisation.
4. The impression will be sent to the lab and the patient is dismissed
5. The preparation will be optically scanned in the lab and the restoration will be digitally designed using computer designing software.
6. The restoration will be printed using 3D printer using microfilled hybrid composite material.
7. During the second visit the temporary is removed the restoration is cemented by self adhesive resin after etching and bonding the cavity.
Control Group B:
1. Crown reduction:
reduction will be performed on the occlusal surface disregarding the occlusal anatomy using a flame stone or a wheel stone, to perform occlusal clearance. Then reduction will be performed on the mesial, distal, buccal and lingual surfaces of the tooth to compensate for the thickness of the zirconia crowns. Reduction will first be performed using fine needle stone to free the contact from the adjacent teeth then followed by reduction of the other surfaces using a diamond stone. Roundation of the line angles will be performed
2. Zirconia crowns that match the size of the tooth will be selected putting into consideration that no undercuts should be present to avoid crown fracture.
3. . After checking the size of the crowns, it will be removed, drie d and cemented on the tooth using (3M™ ESPE™ KETAC™ CEM) that will be mixed according to manufacturer's instructions.
4. Pressure will be applied on the crown, and any excess cement will be removed after it hardens. All children and parents will be give n strict oral hygiene instructions and dietary instructions Teeth not included in the study will be scheduled for dental treatment in the Department of Pediatric Dentistry, Faculty of Dentistry, Ain Shams University. Outcome measurement
Esthetic functional biological criteria will be evaluated in the following order:
After cementation evaluation: patients will be evaluated according to FDI criteria as previously mentioned,.
In Vitro phase:
All soft tissue debris will be removed by a hand scaler and teeth will be disinfect ed, and then stored in distilled water at 4 degrees Celsius until the start of the study.
The molars will undergo pulpotomy procedures and filled as previously described. The molars will be randomly divided into two groups Group A: Will receive 3D printed Endocrowns Group B: Will receive prefabricated zirconia crowns The specimens will be embedded perpendicularly in Polyvinyl chloride ( cubes with the occlusal surface parallel to the ground using acrylic resin extending 2mm b elow the cemento enamel junction. The following will be measured: Marginal gap Precementation measurements of the cervical vertical marginal discrepancies will be performed before cementation. For each specimen, four stereomicrographs will be captured by a stereomicroscope (Wild 400, Switzerland) at a 32× magnification. Images will then be transferred to the computer software for image analysis
Fracture Resistance:
An axial loading condition through the functional cusp will be defined in the mechanical failure description. Failure to fracture strength will be tested with a universal testing machine at a 0.5 mm/sec crosshead speed. Application of a round end vertical loading tip on the occlusal third of a specimen fixed into a loading apparatus as functional loading simulation.
Data Management:
Patient information will be gathered and stored in the patient examination chart of the outpatient clinic, Department of Pediatric Dentistry, faculty of Dentistry, Ain Shams University. All information will be kept as a hard copy and as an electronic one as well. Patient information will be guarded as co nfidential information that should never be revealed at all times. This file will remain with the investigator during the study.
Statistical Analysis:
All data will be tabulated, summarized and statistically analyzed using software SPSS (Statistical Packages for Social Sciences. 3 and 6 months evaluation: evaluation of the previous criteria.
Conditions
See the medical conditions and disease areas that this research is targeting or investigating.
Study Design
Understand how the trial is structured, including allocation methods, masking strategies, primary purpose, and other design elements.
RANDOMIZED
PARALLEL
The molars will be randomly assigned equally into two treatment groups
1. Group A: 3D printed microfilled hybrid composite Endocrowns
2. Group B: pr efabricated zirconia crowns Pulpotomy
TREATMENT
NONE
Study Groups
Review each arm or cohort in the study, along with the interventions and objectives associated with them.
group A
3D printed microfilled hybrid composite Endocrowns
3D-printed endocrown
pulpotomy and restoration with 3D-printed microfilled hybrid composite endocrown
group B
prefabricated zirconia crowns
Zirconia crown
pulpotomy and restoration with prefabricated zirconia crown
Interventions
Learn about the drugs, procedures, or behavioral strategies being tested and how they are applied within this trial.
3D-printed endocrown
pulpotomy and restoration with 3D-printed microfilled hybrid composite endocrown
Zirconia crown
pulpotomy and restoration with prefabricated zirconia crown
Eligibility Criteria
Check the participation requirements, including inclusion and exclusion rules, age limits, and whether healthy volunteers are accepted.
Inclusion Criteria
2. The anticipated exfoliation date of the selected primary teeth has to be more than 12 months from the date of the study start.
Exclusion Criteria
2. Children who are physically or mentally disabled or having any medical condition that will complicate the treatment.
e) Teeth of poor prognosis due to th e presence of an abscess or a sinus, mobility, advanced bone or root resorption.
4 Years
7 Years
ALL
Yes
Sponsors
Meet the organizations funding or collaborating on the study and learn about their roles.
Ain Shams University
OTHER
Responsible Party
Identify the individual or organization who holds primary responsibility for the study information submitted to regulators.
Lamia Hussein
principal investigator
Principal Investigators
Learn about the lead researchers overseeing the trial and their institutional affiliations.
Mariem O Wassel, PhD
Role: STUDY_DIRECTOR
Ainshams university
Locations
Explore where the study is taking place and check the recruitment status at each participating site.
Ain shams university
Cairo, Abbasya, Egypt
Countries
Review the countries where the study has at least one active or historical site.
References
Explore related publications, articles, or registry entries linked to this study.
Abbas LH, Wassel MO, Hassan IT, El-Dimeery AG, Elghazawy RK. 3D printed endocrowns versus prefabricated zirconia crowns for pulpotomized primary molars: A randomized controlled trial. J Dent. 2025 Feb;153:105556. doi: 10.1016/j.jdent.2025.105556. Epub 2025 Jan 6.
Other Identifiers
Review additional registry numbers or institutional identifiers associated with this trial.
PED 20-6D
Identifier Type: -
Identifier Source: org_study_id
More Related Trials
Additional clinical trials that may be relevant based on similarity analysis.