Diagnosis precedes treatment
Peri-implant disease is the leading cause of late implant failure — failure to maintain an osseointegration that was once achieved — and yet its management is, more than almost any other implant problem, a discipline of diagnosis before intervention. The single decision that determines the entire treatment pathway is not which laser to buy or which graft to pack, but whether the lesion in front of you is reversible soft-tissue inflammation or progressive, bone-destructive disease. Get that wrong and every downstream step is mis-aimed: a mucositis treated as peri-implantitis is over-surgicalized, while a peri-implantitis treated as mucositis is allowed to consume the supporting bone unchecked.1
This chapter codifies that discipline. It opens with the 2017 World Workshop case definitions — health, mucositis, and peri-implantitis — including the much-tested rule for diagnosing peri-implantitis when no baseline radiograph exists. It then ports the management algorithm onto the 2023 EFP S3 clinical practice guideline, whose central idea is cumulative, stepwise care: cause-related therapy first, then non-surgical instrumentation, then surgical access and decontamination, then reconstruction where geometry allows, and supportive peri-implant care for the rest of the implant's life. Finally it addresses the hardest conversation in implant maintenance — when to stop salvaging and explant — anchoring it to the two findings that override all others: mobility and bone loss exceeding half the implant length.3
Two principles recur. First, reversibility is the organizing axis: mucositis is the implant analogue of gingivitis and resolves with non-surgical control, whereas peri-implantitis, like periodontitis, is managed but rarely "cured." Second, re-evaluation gates escalation: each phase is reassessed — conventionally at six to eight weeks — before the next is invoked, so that no patient is escalated to surgery for a lesion that simpler care would have settled.
Peri-implant health: no bleeding on probing or suppuration, no probing-depth increase, and no bone loss beyond initial physiologic remodeling. Peri-implant mucositis: bleeding and/or suppuration on probing with no progressive bone loss — an inflammatory lesion of the soft tissue that is reversible. Peri-implantitis: bleeding/suppuration plus progressive bone loss beyond remodeling. Where no baseline radiograph exists, peri-implantitis may be inferred from the combination of probing depth ≥ 6 mm and bone level ≥ 3 mm apical to the implant shoulder, together with bleeding on probing.12
Health, mucositis, and peri-implantitis
The 2017 World Workshop, reported by Berglundh and colleagues for Workgroup 4 and elaborated by Renvert and colleagues, replaced a scatter of competing thresholds with a single coherent framework built on three clinical observations: bleeding on probing (the marker of inflammation), probing depth change (the marker of attachment/soft-tissue change), and radiographic bone level change (the marker of disease progression).12 Probing of implants is legitimate and necessary; a gentle force (~0.25 N) does not damage the mucosal seal, and serial probing — referenced to the bone level recorded at prosthesis delivery — is the backbone of surveillance.
The framework's elegance is that each diagnosis maps to a category of action. Health is maintained; mucositis is reversed non-surgically; peri-implantitis is managed by the staged pathway. The diagnostic difficulty in practice is almost always the same: a patient inherited from another practice, with no baseline radiograph against which to judge "progressive" loss. For exactly this situation the Workshop supplied a fallback case definition — described below and tested relentlessly on board examinations.
| Condition | Bleeding / suppuration | Probing depth | Radiographic bone level | Reversibility & action |
|---|---|---|---|---|
| Peri-implant health | Absent | No increase vs. baseline | No loss beyond initial remodeling | Stable — routine supportive care |
| Peri-implant mucositis | Present (BOP and/or suppuration) | May increase from swelling/edema | No progressive loss beyond remodeling | Reversible — non-surgical control |
| Peri-implantitis (baseline available) | Present | Increased vs. baseline | Progressive loss beyond remodeling | Managed — staged intervention |
| Peri-implantitis (no baseline) | Present | ≥ 6 mm | Bone level ≥ 3 mm apical to shoulder | Managed — staged intervention |
The diagnostic agony of the no-baseline patient is entirely preventable for your own cases. Record a periapical radiograph and a full set of probing depths at the time the prosthesis is delivered — this, not surgery day, is the reference point against which all later "progressive" loss is measured. The fallback ≥ 6 mm / ≥ 3 mm rule is deliberately specific but has limited sensitivity for early disease; it will miss incipient lesions a documented baseline would have caught.2
Cumulative, re-evaluated, escalating care
The 2023 EFP S3 clinical practice guideline, developed by Herrera and colleagues from the 2022 Perio Workshop, frames treatment as a cumulative protocol that mirrors the established staged approach to periodontitis.3 Each step is a prerequisite for — not an alternative to — the next, and a formal re-evaluation gates escalation. The figure below renders the pathway from the diagnostic fork through the four therapeutic phases to lifelong supportive care; the prose that follows expands each phase.
Phase 1 — Cause-related (pre-therapeutic) therapy
No instrumentation succeeds against an uncontrolled cause. This phase reinforces patient-performed plaque control, corrects plaque-retentive prosthetic factors (overcontoured or over-cemented restorations, emergence profiles that defeat hygiene access), and removes residual subgingival cement — a common and reversible driver. It also treats concurrent periodontitis and addresses systemic and behavioral modifiers, chiefly smoking and glycemic control. Where access for cleaning or instrumentation is inadequate, the restoration is removed or modified.3
Phase 2 — Non-surgical mechanical debridement
Submucosal instrumentation is performed with implant-appropriate instruments — titanium or PEEK curettes, air-polishing with low-abrasive glycine or erythritol powder, and ultrasonics with soft tips — to disrupt the biofilm without scoring the surface. Adjuncts (local antiseptics, systemic antibiotics, lasers) show limited additive benefit and are not recommended routinely. Non-surgical therapy alone reliably resolves mucositis and may settle early, accessible peri-implantitis; the site is re-evaluated at 6–8 weeks before any decision to escalate.3
Phase 3 — Surgical access & decontamination
For peri-implantitis that persists after the non-surgical phase, open-flap surgery provides direct access for thorough implant-surface decontamination. Defect morphology dictates the approach: predominantly supracrestal or horizontal defects are managed resectively, with an apically positioned flap and, where indicated, implantoplasty to smooth exposed threads; contained intrabony components are candidates for reconstruction.3
Phase 4 — Reconstructive therapy
Reconstruction is reserved for contained intrabony defects (broadly, three- or four-wall geometries), where a bone substitute, with or without a barrier membrane, can produce radiographic defect fill. Predictability depends on defect geometry and on the quality of decontamination — a graft placed onto a contaminated surface fails. Circumferential, non-contained defects are poor reconstructive candidates and are typically managed resectively or, if severe, drive the explant decision.3
Phase 5 — Supportive peri-implant care (SPIC)
Whatever the route to resolution, the implant enters lifelong supportive care at risk-based intervals of 3–6 months: probing, bleeding-on-probing assessment, radiographic monitoring, and professional debridement. Adherence to SPIC is the single strongest predictor of long-term stability after treatment — the phase most often neglected and most decisive for the result.3
Interactive treatment selector
Select the scenario that matches your patient to reveal the recommended pathway. Treat reversible disease first and re-evaluate before escalating.
- Jumping to surgery (or to systemic antibiotics) before the cause-related and non-surgical phases — escalating a lesion that hygiene and prosthetic correction would have controlled.
- Leaving residual subgingival cement unaddressed and then "treating" the resulting peri-implantitis indefinitely with debridement.
- Grafting a non-contained or circumferential defect, or grafting onto an inadequately decontaminated surface — predictable failure dressed up as reconstruction.
- Discharging the patient after resolution instead of enrolling in SPIC — forfeiting the strongest predictor of long-term success.
Knowing when to stop salvaging
No single criterion mandates removal in isolation, but two findings dominate the decision. Clinical mobility signifies loss of osseointegration — the implant is, by definition, failed, not failing, and is removed. Bone loss exceeding roughly half the implant length (or loss approaching the apex) leaves too little anchorage for predictable salvage and tilts the balance decisively toward explantation.34 Around these two anchors sit the modifiers — defect containment, prosthetic value and restorability, the trajectory of response to staged care, and the burden of recurrent infection or symptoms. The presence of any "removal-favored" finding shifts the weighing strongly, and the combination of mobility or > 50% loss with progression despite treatment effectively settles it.
| Finding | Salvage favored | Removal favored | Evidence |
|---|---|---|---|
| Implant mobility | Stable clinically immobile | Mobile = osseointegration lost | Consensus |
| Bone loss | < 50% of implant length | > 50% or approaching apex | Consensus |
| Defect morphology | Contained, accessible (intrabony) | Circumferential, non-contained | Syst. review |
| Position / restorability | Prosthetically valuable, correctable | Malpositioned, unrestorable | Consensus |
| Response to therapy | Improving after staged care | Progressive loss despite treatment | Syst. review |
| Symptoms / infection | Controlled | Recurrent suppuration, pain, fistula | Consensus |
When removal is indicated, favor reverse-torque / counter-torque devices over the trephine where the implant geometry permits; they sacrifice far less peri-implant bone and preserve the site for simultaneous or staged grafting and re-implantation. Decide grafting timing on the residual defect at removal, plan the reconstruction interval, and — critically — address the original cause (hygiene access, cement, occlusal load, systemic risk) before placing a replacement into the same unfavorable environment.4
Key terms
- Peri-implant health
- Absence of bleeding/suppuration on probing, no probing-depth increase, and no bone loss beyond initial physiologic remodeling.
- Peri-implant mucositis
- Reversible inflammatory lesion of the peri-implant soft tissue with bleeding/suppuration on probing but no progressive bone loss.
- Peri-implantitis
- Plaque-associated pathological condition with peri-implant mucosal inflammation and progressive supporting-bone loss.
- No-baseline case definition
- In the absence of baseline records, peri-implantitis may be inferred from bleeding on probing plus probing depth ≥ 6 mm and bone level ≥ 3 mm apical to the implant shoulder.
- Cause-related therapy
- Pre-therapeutic phase correcting plaque control, prosthetic/cement factors, and systemic/behavioral risk before instrumentation.
- SPIC
- Supportive peri-implant care — lifelong, risk-based recall (3–6 months) of probing, BOP, radiographs, and professional debridement.
- Implantoplasty
- Mechanical smoothing/removal of exposed implant threads during resective surgery to reduce biofilm-retentive surface.
- Reconstructive therapy
- Grafting (bone substitute ± membrane) of contained intrabony peri-implant defects to achieve radiographic defect fill.
- Reverse-torque removal
- Atraumatic explantation using a counter-torque device that unscrews the implant, sparing peri-implant bone relative to trephination.
Board & oral-defense preparation
- What probing force do you use, and is probing safe?
- Why is the prosthesis-delivery time point the correct baseline?
- Why is the fallback definition's sensitivity low?
- What records would you create at this first visit?
- Which defects do you graft, and which do you treat resectively?
- What role do adjunctive antibiotics and lasers play?
- Why is mobility an absolute rather than relative indication?
- How does removal technique affect the next implant?
- What factors lengthen or shorten the recall interval?
- What findings at a recall would trigger re-treatment?
References
- Berglundh T, Armitage G, Araujo MG, et al. Peri-implant diseases and conditions: Consensus report of workgroup 4 of the 2017 World Workshop on the Classification of Periodontal and Peri-Implant Diseases and Conditions. J Periodontol. 2018;89(Suppl 1):S313–S318. doi:10.1002/JPER.17-0739 PMID: 29926955
- Renvert S, Persson GR, Pirih FQ, Camargo PM. Peri-implant health, peri-implant mucositis, and peri-implantitis: Case definitions and diagnostic considerations. J Periodontol. 2018;89(Suppl 1):S304–S312. doi:10.1002/JPER.17-0588 PMID: 29926953
- Herrera D, Berglundh T, Schwarz F, et al. Prevention and treatment of peri-implant diseases — The EFP S3 level clinical practice guideline. J Clin Periodontol. 2023;50(Suppl 26):4–76. doi:10.1111/jcpe.13823 PMID: 37271498
- Schwarz F, Derks J, Monje A, Wang HL. Peri-implantitis. J Periodontol. 2018;89(Suppl 1):S267–S290. doi:10.1002/JPER.16-0350 PMID: 29926957
Evidence grades: Systematic review Consensus Preclinical.