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Titanium Particle Release Across Non-Surgical Peri-implantitis Therapies

Evaluation of the Effects of Peri-implantitis Treatment Approaches on Titanium Particle Release

Status
Not yet recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07811921
Enrollment
70
Registered
2026-09-10
Start date
2026-10-15
Completion date
2027-06-15
Last updated
2026-09-10

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

Conditions

Peri-implantitis

Keywords

Peri-implantitis, Titanium particle release, Non-surgical peri-implantitis treatment, Decontamination methods, Inductively Coupled Plasma Mass Spectrometry (ICP-MS), Peri-implant sulcular fluid

Brief summary

This prospective, randomized, controlled, single-blind, in vivo clinical and laboratory study aims to quantitatively compare the clinical success and metal ion release associated with four different non-surgical decontamination methods in the management of peri-implantitis. A total of 70 implants (56 peri-implantitis implants divided into four treatment groups, and 14 healthy control implants) will be included. Clinical parameters will be evaluated at baseline and 6 weeks, and multi-element trace metal levels (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) in peri-implant sulcular fluid (PISF) and granulation tissue will be analyzed using Inductively Coupled Plasma Mass Spectrometry (ICP-MS) at baseline, 24 hours, and 6 weeks.

Detailed description

Background and Rationale: Peri-implantitis is a multifactorial inflammatory disease characterized by inflammation in the peri-implant soft tissues and progressive loss of supporting crestal bone. Non-surgical treatment protocols primarily aim to eliminate pathogenic bacterial biofilm and reduce local inflammation. However, mechanical forces and physical methods applied during these procedures can cause micro- and macro-level surface alterations on dental implants, leading to the release of metallic micro- and nanoparticles into the surrounding tissues. These released metal ions and particles can trigger foreign body reactions, macrophage polarization, and elevated cytokine expression, thereby exacerbating bone resorption independently of the biofilm. Although various non-surgical decontamination methods are clinically utilized, data evaluating their short- and medium-term metal release kinetics alongside clinical outcomes through prospective in vivo designs remain limited. Objectives and Hypotheses: The primary objective of this study is to prospectively compare the clinical efficacy of four different non-surgical decontamination methods and to quantitatively assess their impact on multi-element trace metal release (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) in peri-implant sulcular fluid (PISF) and granulation tissue. The study will test hypotheses regarding whether different treatment modalities create significant differences in clinical parameters (Probing Depth, Plaque Index, Bleeding on Probing, Gingival Index, Clinical Attachment Level) and metal ion load, while determining the most biocompatible and minimally invasive protocol. Study Design and Patient Population: This study is designed as a prospective, randomized, controlled, single-blind, in vivo clinical and laboratory trial. A total of 70 implants will be evaluated: 56 peri-implantitis implants and 14 healthy control implants. Peri-implantitis cases will be randomly allocated using computer-generated block randomization via the sequentially numbered opaque sealed envelope (SNOSE) method into four parallel treatment groups (14 implants per group): Group 1 (Titanium Curette): Mechanical debridement using titanium curettes (10-15 strokes per surface horizontally and apico-coronally). Group 2 (Plastic Curette): Mechanical debridement using implant-compatible plastic curettes adhering to the same stroke and directional principles. Group 3 (Diode Laser): Diode laser application (940 nm, 1 W average power, non-contact mode, 300 µm fiber tip for 60 seconds). Group 4 (EMS Air-Flow + PEEK): Guided Biofilm Therapy (GBT) protocol utilizing submarginal erythritol powder via PerioFlow nozzle, followed by a PEEK instrument (Piezon PI) to remove remaining calcified deposits. Group 5 (Healthy Control): Individuals with peri-implant health receiving no treatment intervention, undergoing clinical monitoring and PISF collection only. Procedures and Assessments: Clinical Parameters: Probing Depth (PD), Bleeding on Probing (BoP), Plaque Index (PI), Gingival Index (GI), and Clinical Attachment Level (CAL) will be recorded at baseline (T0) and at 6 weeks (T2) by a blinded and calibrated investigator. PISF Sampling: Peri-implant sulcular fluid samples will be collected using sterile paper strips (Periopaper) at baseline (T0), 24 hours post-treatment (T1), and 6 weeks post-treatment (T2). Fluid volume will be measured via Periotron and stored at -80°C. Granulation Tissue Sampling: Inflammatory granulation tissue samples will be collected during debridement (or via gentle sulcular sampling for laser and air-flow groups, strictly avoiding contact with the titanium surface) and placed in sterile eppendorf tubes. ICP-MS Analysis: Biological samples will undergo microwave-assisted acid digestion and quantitative elemental analysis (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) using Inductively Coupled Plasma Mass Spectrometry (ICP-MS) at an accredited laboratory. Baseline metal loads of materials (such as erythritol powder and blank Periopaper strips) will be accounted for and subtracted.

Interventions

DEVICEMechanical Debridement with Titanium Curettes

This arm evaluates standard mechanical debridement using medical-grade titanium curettes, applied as 10-15 systematic strokes per implant surface horizontally and apico-coronally. Unlike conventional studies that focus solely on clinical indices, this protocol uniquely combines mechanical cleaning with quantitative Inductively Coupled Plasma Mass Spectrometry (ICP-MS) analysis to measure multi-element trace metal release (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) in both peri-implant sulcular fluid (PISF) and inflammatory granulation tissue, determining the specific particulate load generated by metallic curettage.

DEVICEMechanical Debridement with Plastic Curettes

This arm utilizes implant-compatible, flexible plastic curettes adhering to identical stroke parameters (10-15 strokes per surface horizontally and apico-coronally). Its unique methodological value lies in comparing polymer-based mechanical instrumentation against metallic counterparts, specifically quantifying whether non-metallic mechanical debridement mitigates multi-element trace metal release (analyzed via ICP-MS across 11 elemental parameters in PISF and granulation tissue) while maintaining therapeutic clinical efficacy in peri-implantitis management.

DEVICE940 nm Diode Laser Decontamination

This arm implements a laser-assisted decontamination protocol using a 940 nm diode laser operated in non-contact mode at an average power of 1 W with a 300 µm fiber tip applied for 60 seconds per surface. This intervention investigates the thermal and bactericidal efficacy of optical decontamination, uniquely pairing it with high-precision ICP-MS trace metal quantification (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) from PISF and granulation tissue samples to evaluate whether photon-based decontamination induces surface alterations or ion shedding compared to mechanical modalities.

DEVICESubmarginal Erythritol Air-Polishing and PEEK Instrumentation

This arm employs a two-step Guided Biofilm Therapy (GBT) protocol combining submarginal air-polishing with erythritol powder via a PerioFlow nozzle followed by a medical-grade PEEK (Piezon PI) instrument for hard deposit removal. This advanced combination protocol is uniquely designed to eliminate biofilm without scarring the titanium surface, its safety and efficacy rigorously validated through quantitative multi-element ICP-MS analysis of 11 trace metals in PISF and granulation tissue samples collected at baseline, 24 hours, and 6 weeks.

OTHERClinical Observation and Sampling Only from Healthy implants

This non-intervention control cohort comprises individuals with clinically healthy dental implants who receive no surgical or therapeutic decontamination. It serves as a vital comparative baseline for the study, allowing researchers to evaluate physiological baseline levels of multi-element trace metal concentrations (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) in PISF and tissue samples relative to diseased, treated implant sites without confounding therapeutic variables.

Sponsors

Saglik Bilimleri Universitesi
Lead SponsorOTHER
Health Sciences University-Scientific Research Projects Unit
CollaboratorUNKNOWN

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Masking description

This single-blind study maintains blinding specifically for the clinical outcomes assessor to minimize detection bias. Due to the distinct physical and operational nature of the interventional devices utilized-including titanium curettes, plastic curettes, diode lasers, and air-flow systems-complete blinding of the treating clinician and the study participants is not feasible. To safeguard study integrity, all clinical parameter evaluations-including Probing Depth (PD), Bleeding on Probing (BoP), Plaque Index (PI), Gingival Index (GI), and Clinical Attachment Level (CAL) recorded at baseline (T0) and 6 weeks (T2)-will be performed exclusively by an independent, calibrated examiner (specialist physician) who remains strictly blinded to the group allocations and treatment protocols. Additionally, laboratory technicians performing the Inductively Coupled Plasma Mass Spectrometry (ICP-MS) elemental analyses will be blinded to the group identities of the biological samples.

Intervention model description

This study utilizes a parallel assignment design comprising five distinct study groups, consisting of four active treatment arms for peri-implantitis and one healthy control arm. Participants diagnosed with peri-implantitis will be randomly allocated to one of four parallel non-surgical decontamination groups using computer-generated block randomization via the sequentially numbered opaque sealed envelope (SNOSE) method. An additional cohort of individuals with healthy implants will serve as a non-intervention control group to establish baseline comparative parameters for metal ion release and clinical evaluations.

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Being systemically healthy and older than 18 years of age. * Having implants diagnosed with peri-implantitis according to the 2017 World Workshop criteria (probing depth ≥ 5 mm, bleeding on probing positive, radiographic bone loss \> 2 mm). * Dental implants being in function in the oral cavity for at least 1 year.

Exclusion criteria

* Having received systemic antibiotic therapy within the past 3 months. * Having previously received peri-implantitis treatment at the relevant implant site. * Being pregnant or lactating.

Design outcomes

Primary

MeasureTime frameDescription
Change in Multi-Element Trace Metal Concentrations (Titanium Ion Release) in Peri-Implant Sulcular Fluid (PISF)Baseline (T0), 24 hours post-treatment (T1), and 6 weeks post-treatment (T2)Quantitative analysis of multi-element trace metal concentrations-specifically Titanium (Ti) along with Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, and Pb-released into the peri-implant sulcular fluid (PISF). PISF samples will be collected using sterile Periopaper strips, quantified via Periotron, stored at -80°C, and analyzed using Inductively Coupled Plasma Mass Spectrometry (ICP-MS) following microwave-assisted acid digestion, subtracting baseline material blanks.

Secondary

MeasureTime frameDescription
Change in Probing Depth (PD)Baseline (T0) and 6 weeks post-treatment (T2)Assessment of peri-implant pocket depth reduction measured in millimeters using a standardized periodontal probe from the mucosal margin to the base of the peri-implant pocket. All measurements will be recorded by a blinded and calibrated investigator.
Change in Bleeding on Probing (BoP)Baseline (T0) and 6 weeks post-treatment (T2)Evaluation of mucosal inflammation around the dental implants, recorded dichotomously as the presence or absence of bleeding within 30 seconds following gentle probing of the peri-implant sulcus.
Change in Plaque Index (PI)Baseline (T0) and 6 weeks post-treatment (T2)Quantification of microbial plaque accumulation and oral hygiene status surrounding the dental implant sites, evaluated using standardized clinical scoring criteria.
Change in Gingival Index (GI)Baseline (T0) and 6 weeks post-treatment (T2)Assessment of the severity of peri-implant mucosal inflammation based on visual characteristics and tissue response to mild probing around the implant perimeter.
Change in Clinical Attachment Level (CAL)Baseline (T0) and 6 weeks post-treatment (T2)Quantification of the distance from a fixed anatomical or prosthetic reference point (such as the implant shoulder or crown margin) to the base of the pocket, serving as an indicator of supporting tissue status.
Change in Multi-Element Trace Metal Concentrations in Inflammatory Granulation TissueOnly at baseline (T0) during debridementQuantitative elemental analysis of multi-element trace metal levels (Ti, Al, V, Co, Cr, Cu, Zr, Fe, Ni, As, Pb) in inflammatory granulation tissue samples collected during debridement (or via gentle sulcular sampling for non-contact groups) using Inductively Coupled Plasma Mass Spectrometry (ICP-MS) following microwave-assisted acid digestion.

Contacts

CONTACTÖzlem SARAÇ ATAGÜN, DDS, Assoc. Prof.
ozlemsarac2806@hotmail.com+905055096482
CONTACTİrem Sezen, DDS, PhD Candidate
iremszn@gmail.com+905426982624

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Sep 11, 2026