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Investigation of Biofilm Formation on Temporary push-on Rings of Implant Crowns

Primary Purpose

Dental Plaque, Oral Biofilm, Peri-implantitis

Status
Recruiting
Phase
Not Applicable
Locations
Switzerland
Study Type
Interventional
Intervention
Rings made of PA (test)
Rings made of TAN (control)
Sponsored by
University Hospital, Basel, Switzerland
About
Eligibility
Locations
Arms
Outcomes
Full info

About this trial

This is an interventional diagnostic trial for Dental Plaque focused on measuring Titanium-6Aluminum-7Niobium alloy, Pagalinor, transmucosal implant abutment, implant crowns, temporary push-on rings, Variobase abutments

Eligibility Criteria

18 Years - undefined (Adult, Older Adult)All SexesAccepts Healthy Volunteers

Inclusion Criteria:

  • Informed Consent signed by the subject
  • Presence of one or more bone level titanium implant prior to insertion of the final restoration
  • No systemic illness
  • No heavy smoking (smoking <10 cigarettes/day)
  • No pregnancy
  • No active periodontitis (probing pocket depth ≤4 mm)
  • No pharmacological treatment or antibiotic therapy during or up to three months before the study

Exclusion Criteria:

  • Systemic illness (e.g. Diabetes)
  • Heavy smoking (smoking >10 cigarettes/day)
  • Known or suspected non-compliance, drug or alcohol abuse
  • Pregnancy
  • Active periodontitis (probing pocket depth >4 mm)
  • Pharmacological treatment or antibiotic therapy during or up to three months before the study

Sites / Locations

  • UZB (University Center for Dental Medicine Basel)Recruiting

Arms of the Study

Arm 1

Arm 2

Arm Type

Experimental

Active Comparator

Arm Label

Pagalinor®2 (PA) test arm

Titanium-6Aluminum- 7Niobium alloy (TAN) control arm

Arm Description

All patients will wear both the test and control ring material for a within-subject comparison. Ideally, biofilm sampling can be performed in a split mouth design (randomly allocated materials within subjects) with one patient having two implants for placing the test and the control material at the same time. In addition, patients providing one implant, will receive test and control push-on rings in a randomly assigned order, so that both materials are assessed in a consecutive manner.

All patients will wear both the test and control ring material for a within-subject comparison. Ideally, biofilm sampling can be performed in a split mouth design (randomly allocated materials within subjects) with one patient having two implants for placing the test and the control material at the same time. In addition, patients providing one implant, will receive test and control push-on rings in a randomly assigned order, so that both materials are assessed in a consecutive manner.

Outcomes

Primary Outcome Measures

Change in total bacterial load formed on the removable rings of each material
Quantification of the bacterial load formed on the removable rings of each material by quantitative real-time PCR (qPCR) using primers specific to highly conserved regions of bacterial 16S rRNA genes.

Secondary Outcome Measures

Change in bacterial composition (taxonomic diversity) between different materials at various time points by using metagenomic sequencing analysis
To assess differences in bacterial composition (taxonomic diversity) between different materials at various time points by Illumina MiSeq sequencing. The taxonomy of each 16S rRNA gene sequence will be analyzed by Ribosomal Database Project (RDP) Classifier (http://rdp.cme.msu.edu/) against the SILVA (SSU123) 16S rRNA database using a confidence threshold of 70%.
Change in probing pocket depth (PPD) in mm
Change in probing pocket depth (PPD) to investigate the inflammatory tissue response
Change in bleeding on probing (BoP)
Recording bleeding on probing (BoP) to investigate the inflammatory tissue response
Change in noninvasive laser doppler flowmetry
Change in noninvasive laser doppler flowmetry to to measure the blood flow of mucosa next to the ring

Full Information

First Posted
November 3, 2021
Last Updated
January 25, 2022
Sponsor
University Hospital, Basel, Switzerland
Collaborators
ITI International Team for Implantology, Switzerland
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1. Study Identification

Unique Protocol Identification Number
NCT05122897
Brief Title
Investigation of Biofilm Formation on Temporary push-on Rings of Implant Crowns
Official Title
Temporary push-on Rings of Antimicrobial Alloys for Transmucosal Implant Abutment Systems: a Randomized Clinical Study on Early and Mature Biofilm Formation
Study Type
Interventional

2. Study Status

Record Verification Date
January 2022
Overall Recruitment Status
Recruiting
Study Start Date
January 11, 2022 (Actual)
Primary Completion Date
December 2024 (Anticipated)
Study Completion Date
December 2024 (Anticipated)

3. Sponsor/Collaborators

Responsible Party, by Official Title
Sponsor
Name of the Sponsor
University Hospital, Basel, Switzerland
Collaborators
ITI International Team for Implantology, Switzerland

4. Oversight

Studies a U.S. FDA-regulated Drug Product
No
Studies a U.S. FDA-regulated Device Product
No
Data Monitoring Committee
No

5. Study Description

Brief Summary
This in-vivo study investigates early (48h), mature (2 weeks) and long-term (3 months) biofilm formation and composition on temporary push-on cones (exchangeable conical rings) made of noble-alloy-based materials (Pagalinor, PA) in comparison to Titanium-6Aluminum-7Niobium alloy (TAN) presently used in the transmucosal portion of dental implant abutments.
Detailed Description
Oral biofilm (dental plaque) consists of bacteria and their metabolic products as well as saliva components and food residues. It is recognizable as a tough and structured coating on teeth and artificial surfaces within the oral cavity. Plaque development is a physiological process that begins immediately after cleaning of the oral surface. If the biofilm is not removed by daily oral hygiene, it continues to mature while changing the structure and its microbial composition. Implant restorations comprise the osseous implant portion predominantly manufactured from titanium alloys, the transmucosal implant portion (in most implant systems as a separate abutment), and the clinical crown, which is in most systems extraorally cemented on an abutment and screw-retained onto the implant. According to current knowledge, microbial colonization of the implant abutment surface plays a significant role in the aetiology of peri-implantitis. This study investigates the antibacterial potential of a temporary push-on cone (conical ring) that could reduce the risk of bacterial related peri-implant diseases due to decreased biofilm susceptibility, compared to current available transmucosal materials, in the short- and long-run. The test material Pagalinor®2 (PA) is an established material in dental medicine and has proven to accumulate least biofilm in an in-vivo biofilm sampling model using removable splints. The control material consists of the current transmucosal implant abutment material Titanium-6Aluminum- 7Niobium alloy (TAN). The push-on rings are designed for repeated application along the transmucosal implant abutment portion with high precision fit and will allow biofilm sampling in the natural implant environment. Profound insight into the native homeostasis of biofilm formation will be obtained and therefore enhance the knowledge about long-term tissue response.

6. Conditions and Keywords

Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Dental Plaque, Oral Biofilm, Peri-implantitis
Keywords
Titanium-6Aluminum-7Niobium alloy, Pagalinor, transmucosal implant abutment, implant crowns, temporary push-on rings, Variobase abutments

7. Study Design

Primary Purpose
Diagnostic
Study Phase
Not Applicable
Interventional Study Model
Parallel Assignment
Model Description
All patients enrolled in the current investigation will wear both the test and control ring material for a within-subject comparison. Ideally, biofilm sampling can be performed in a split mouth design (randomly allocated materials within subjects) with one patient having two implants for placing the test and the control material at the same time. In addition, patients providing one implant, will receive test and control push-on rings in a randomly assigned order, so that both materials are assessed in a consecutive manner.
Masking
ParticipantInvestigator
Masking Description
Double-blinded with the patient not knowing which material is placed, and the investigator and laboratory technicians have no information about the ring material.
Allocation
Randomized
Enrollment
33 (Anticipated)

8. Arms, Groups, and Interventions

Arm Title
Pagalinor®2 (PA) test arm
Arm Type
Experimental
Arm Description
All patients will wear both the test and control ring material for a within-subject comparison. Ideally, biofilm sampling can be performed in a split mouth design (randomly allocated materials within subjects) with one patient having two implants for placing the test and the control material at the same time. In addition, patients providing one implant, will receive test and control push-on rings in a randomly assigned order, so that both materials are assessed in a consecutive manner.
Arm Title
Titanium-6Aluminum- 7Niobium alloy (TAN) control arm
Arm Type
Active Comparator
Arm Description
All patients will wear both the test and control ring material for a within-subject comparison. Ideally, biofilm sampling can be performed in a split mouth design (randomly allocated materials within subjects) with one patient having two implants for placing the test and the control material at the same time. In addition, patients providing one implant, will receive test and control push-on rings in a randomly assigned order, so that both materials are assessed in a consecutive manner.
Intervention Type
Device
Intervention Name(s)
Rings made of PA (test)
Intervention Description
Rings made of PA (test) 0.2mm in thickness are pushed on the conical titanium base (abutment) of implant crowns and are removed and replaced after 48h, 2 weeks and 3 months for quantification of the bacterial biofilm. Test rings are applied in a split-mouth design provided that 2 implants are present (total of 4 months study period), or one after the other when only 1 implant is present (total of 8 months study period).
Intervention Type
Device
Intervention Name(s)
Rings made of TAN (control)
Intervention Description
Rings made of TAN (control) 0.2mm in thickness are pushed on the conical titanium base (abutment) of implant crowns and are removed and replaced after 48h, 2 weeks and 3 months for quantification of the bacterial biofilm. Control rings are applied in a split-mouth design provided that 2 implants are present (total of 4 months study period), or one after the other when only 1 implant is present (total of 8 months study period).
Primary Outcome Measure Information:
Title
Change in total bacterial load formed on the removable rings of each material
Description
Quantification of the bacterial load formed on the removable rings of each material by quantitative real-time PCR (qPCR) using primers specific to highly conserved regions of bacterial 16S rRNA genes.
Time Frame
at 48 hours after ring placement, 2 weeks after ring placement and 3 months after ring placement
Secondary Outcome Measure Information:
Title
Change in bacterial composition (taxonomic diversity) between different materials at various time points by using metagenomic sequencing analysis
Description
To assess differences in bacterial composition (taxonomic diversity) between different materials at various time points by Illumina MiSeq sequencing. The taxonomy of each 16S rRNA gene sequence will be analyzed by Ribosomal Database Project (RDP) Classifier (http://rdp.cme.msu.edu/) against the SILVA (SSU123) 16S rRNA database using a confidence threshold of 70%.
Time Frame
at baseline, 2 weeks after ring placement and 10 weeks after ring placement
Title
Change in probing pocket depth (PPD) in mm
Description
Change in probing pocket depth (PPD) to investigate the inflammatory tissue response
Time Frame
at baseline, 2 weeks after ring placement and 10 weeks after ring placement
Title
Change in bleeding on probing (BoP)
Description
Recording bleeding on probing (BoP) to investigate the inflammatory tissue response
Time Frame
at baseline, 2 weeks after ring placement and 10 weeks after ring placement
Title
Change in noninvasive laser doppler flowmetry
Description
Change in noninvasive laser doppler flowmetry to to measure the blood flow of mucosa next to the ring
Time Frame
at baseline, 2 weeks after ring placement and 10 weeks after ring placement

10. Eligibility

Sex
All
Minimum Age & Unit of Time
18 Years
Accepts Healthy Volunteers
Accepts Healthy Volunteers
Eligibility Criteria
Inclusion Criteria: Informed Consent signed by the subject Presence of one or more bone level titanium implant prior to insertion of the final restoration No systemic illness No heavy smoking (smoking <10 cigarettes/day) No pregnancy No active periodontitis (probing pocket depth ≤4 mm) No pharmacological treatment or antibiotic therapy during or up to three months before the study Exclusion Criteria: Systemic illness (e.g. Diabetes) Heavy smoking (smoking >10 cigarettes/day) Known or suspected non-compliance, drug or alcohol abuse Pregnancy Active periodontitis (probing pocket depth >4 mm) Pharmacological treatment or antibiotic therapy during or up to three months before the study
Central Contact Person:
First Name & Middle Initial & Last Name or Official Title & Degree
Nicola U. Zitzmann, Prof. Dr.
Phone
+41 61 267 26 36
Email
n.zitzmann@unibas.ch
First Name & Middle Initial & Last Name or Official Title & Degree
Lucia K. Zaugg, Dr. med. dent.
Phone
+41 61 267 26 36
Email
lucia.zaugg@unibas.ch
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Nicola U. Zitzmann, Prof. Dr.
Organizational Affiliation
University Center for Dental Medicine Basel
Official's Role
Principal Investigator
Facility Information:
Facility Name
UZB (University Center for Dental Medicine Basel)
City
Basel
ZIP/Postal Code
4058
Country
Switzerland
Individual Site Status
Recruiting
Facility Contact:
First Name & Middle Initial & Last Name & Degree
Nicola U. Zitzmann, Prof. Dr.
Phone
+41 61 267 26 36
Email
n.zitzmann@unibas.ch
First Name & Middle Initial & Last Name & Degree
Lucia K. Zaugg, Dr. med. dent.
Phone
+41 61 267 26 36
Email
lucia.zaugg@unibas.ch
First Name & Middle Initial & Last Name & Degree
Nicola U. Zitzmann, Prof. Dr.
First Name & Middle Initial & Last Name & Degree
Lucia K. Zaugg, Dr. med. dent.

12. IPD Sharing Statement

Learn more about this trial

Investigation of Biofilm Formation on Temporary push-on Rings of Implant Crowns

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