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RecruitingNCT07671963Updated Jun 26, 2026

Bone Substitutes and NIPSA in Intrabony Periodontal Defects: A Randomized Controlled Trial

An interventional study of GTO® with NIPSA surgical approach and GenOs® + NIPSA in Periodontitis (Stage 3), Minimally Invasive Surgical Procedures and Bone Substitutes, sponsored by University of Belgrade. Recruiting at 2 sites in 2 countries. Open to participants aged 18 Years to 80 Years, including healthy volunteers. Per ClinicalTrials.gov, last updated 2026-06-26.

Sponsored by University of Belgrade · Not applicable, Interventional, and Treatment

Phase
Not applicable
Study type
Interventional
Enrollment
30
Allocation
Randomized
Ages
18 Years to 80 Years
Sex
All
01

Study summary

This multicenter randomized controlled clinical trial aims to compare the clinical, radiographic, microbiological and molecular outcomes of two collagenated xenogeneic bone substitutes (GTO® and GenOs®) used in combination with the Non-Incised Papilla Surgical Approach (NIPSA) for the treatment of intrabony periodontal defects. The study will evaluate whether differences exist between the two biomaterials with respect to clinical attachment gain, defect resolution, wound healing and biological markers of regeneration.

Read the detailed description

Background Periodontal reconstructive surgery has demonstrated favourable long-term outcomes in the treatment of intrabony periodontal defects, including challenging defects with limited remaining bony walls. Periodontitis is a chronic inflammatory disease associated with progressive destruction of the tooth-supporting tissues and alveolar bone loss. Intrabony defects are associated with an increased risk of disease progression and tooth loss and therefore represent an important therapeutic challenge.

Recent advances in minimally invasive periodontal surgery aim to improve regenerative outcomes while reducing patient morbidity. The Non-Incised Papilla Surgical Approach (NIPSA) is a minimally invasive surgical technique that provides access to the intrabony defect through an apical incision while preserving the papillary and marginal soft tissues. This approach may improve wound stability, clot protection, vascularisation, and soft tissue preservation.

In parallel, collagenated xenogeneic bone substitutes have been developed to enhance periodontal regeneration. GenOs® is a collagenated xenogeneic particulate bone substitute with a preserved collagen matrix and documented regenerative potential. GTO® is a collagenated xenogeneic bone substitute consisting of cortico-cancellous granules incorporated into a cohesive collagen gel composed of type I and III collagen. Differences in biomaterial composition and physical form may influence wound healing, tissue stability, and regenerative outcomes.

Aim The aim of this multicenter randomised controlled clinical trial is to compare the clinical, radiographic, microbiological, and molecular outcomes of GTO® and GenOs® used in combination with the NIPSA surgical approach for the treatment of intrabony periodontal defects. The study will evaluate whether the two biomaterials result in comparable improvements in periodontal regeneration and biological markers associated with bone formation and healing.

Materials and Methods This study is designed as a multicenter, parallel-group, randomised controlled clinical trial conducted at the School of Dental Medicine, University of Belgrade (Serbia), and the Department of Periodontology, University of Cagliari (Italy).

Thirty patients diagnosed with Stage III periodontitis and presenting with at least one intrabony periodontal defect with probing depth greater than 5 mm following completion of non-surgical periodontal therapy will be enrolled. Participants will be randomly allocated in a 1:1 ratio to one of two treatment groups:

Test group: GTO® combined with the NIPSA surgical technique. Control group: GenOs® combined with the NIPSA surgical technique. Allocation concealment will be achieved using sequentially numbered, opaque, sealed envelopes. The operator will be informed of the assigned biomaterial after defect preparation, while the examiner responsible for clinical measurements, radiographic assessment, and outcome evaluation will remain blinded to treatment allocation throughout the study.

Clinical parameters, including probing depth (PD), clinical attachment level (CAL), bleeding on probing (BOP), and plaque index (PI), will be recorded at baseline and 6 months after surgery. Standardized periapical radiographs will be obtained at baseline, immediately after surgery, and at 6 months.

Microbiological analysis will be performed using real-time PCR. Molecular analyses will evaluate gene expression associated with osteogenesis and bone remodelling (RANKL, OPG, ALP, RUNX2, OCN), vascularisation (VEGF, HIF-2, eNOS), and growth factors (FGF and TGF). Particular attention will be given to the RANKL/OPG ratio as a marker of the balance between bone resorption and bone formation.

Clinical Relevance This study will provide comparative evidence regarding the regenerative potential of two collagenated xenogeneic bone substitutes used in conjunction with a minimally invasive periodontal surgical approach. The findings may contribute to optimising biomaterial selection and improving treatment predictability in regenerative periodontal therapy.

02

Conditions studied

  • Periodontitis (Stage 3)
  • Minimally Invasive Surgical Procedures
  • Bone Substitutes

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Keywords

  • periodontitis
  • regenerative treatment
  • NIPSA
  • bone substitutes
03

Who can participate

Ages eligible
18 Years to 80 Years
Sexes eligible
All
Accepts healthy volunteers
Yes

Inclusion criteria

  • Age ≥ 18 years
  • Diagnosis of Stage III periodontitis
  • At least one intrabony periodontal defect with probing depth > 5 mm following completion of non-surgical periodontal therapy
  • Full-mouth plaque score (FMPS) \< 20%
  • Full-mouth bleeding score (FMBS) \< 20%
  • Ability to understand the study procedures and provide written informed consent

Exclusion criteria

Exclusion Criteria:

  • Systemic medical contraindications to periodontal surgery
  • History of head and neck radiotherapy
  • Poor oral hygiene or lack of motivation/compliance
  • Uncontrolled diabetes mellitus
  • Pregnancy or lactation
  • Treatment with antiresorptive medications or other drugs affecting bone remodeling
  • Heavy smoking (>20 cigarettes/day)
04

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Single (Outcomes assessor)
Enrollment
30 participants (estimated)

Study arms

  • Experimental
    GTO® + NIPSA

    Regenerative periodontal therapy using GTO® collagenated xenogeneic bone substitute in combination with the Non-Incised Papilla Surgical Approach (NIPSA).

    Procedure: GTO® with NIPSA surgical approach

  • Active comparator
    GenOs® + NIPSA

    Regenerative periodontal therapy using GenOs® collagenated xenogeneic bone substitute in combination with the Non-Incised Papilla Surgical Approach (NIPSA).

    Procedure: GenOs® + NIPSA

Interventions

  • ProcedureGTO® with NIPSA surgical approach

    Regenerative periodontal surgical treatment using the Non-Incised Papilla Surgical Approach (NIPSA) combined with GTO® collagenated xenogeneic bone substitute for the treatment of intrabony periodontal defects.

  • ProcedureGenOs® + NIPSA

    Regenerative periodontal surgical treatment using the Non-Incised Papilla Surgical Approach (NIPSA) combined with GenOs® collagenated xenogeneic bone substitute for the treatment of intrabony periodontal defects.

05

What researchers measure

Primary outcomes

  1. Clinical Attachment Level (CAL) gain

    Change in clinical attachment level (CAL) at treated intrabony periodontal defects from baseline to 6 months following regenerative periodontal therapy using either GTO® or GenOs® in combination with the Non-Incised Papilla Surgical Approach (NIPSA).

    Time frame: Baseline to 6 months

Secondary outcomes

  1. Probing Depth (PD) reduction

    Change in probing depth at treated sites from baseline to 6 months.

    Time frame: Baseline to 6 months

  2. Bleeding on Probing (BOP)

    Change in bleeding on probing (presence/absence) at treated sites from baseline to 6 months.

    Time frame: Baseline to 6 months

  3. Plaque Index (PI)

    Change in plaque index (PI) from baseline to 6 months

    Time frame: Baseline to 6 months

  4. Radiographic bone level changes

    Change in radiographic bone level at treated sites from baseline to 6 months using standardised periapical radiographs.

    Time frame: Baseline to 6 months

  5. Quantification of periodontal pathogens

    Change in levels of key periodontal pathogens (Porphyromonas gingivalis, Fusobacterium nucleatum, Prevotella intermedia, Aggregatibacter actinomycetemcomitans) from baseline to 6 months assessed by real-time PCR.

    Time frame: Baseline to 6 months

  6. Gene expression of osteogenic markers

    Change in gene expression of markers related to osteogenesis and bone remodelling (RANKL, OPG, ALP, RUNX2, OCN) from baseline to 6 months

    Time frame: Baseline to 6 months

  7. Gene Expression of Vascularization Markers

    Change in gene expression of vascularisation-related markers (VEGF, HIF-2, eNOS) from baseline to 6 months

    Time frame: Baseline to 6 months

  8. Growth Factor Expression

    Change in expression of growth factors associated with wound healing and regeneration (FGF and TGF) from baseline to 6 months

    Time frame: Baseline to 6 months

  9. Early Healing Index (EHI)

    Assessment of early soft tissue healing using the Early Healing Index (EHI) at 1 week postoperatively.

    Time frame: 1 week postoperatively

  10. Postoperative pain and discomfort

    Patient-reported postoperative pain and discomfort assessed using a visual analog scale (VAS) ranging from 0 (no pain/discomfort) to 10 (worst imaginable pain/discomfort) during the first 7 days following surgery.

    Time frame: Up to 7 days postoperatively

06

Study locations

2 of 2 sites recruiting
  • Department of Periodontology, School of Dental Medicine, University of Cagliari Cittadella Universitaria di Monserrato Monserrato (CA), Italy
    Cagliari, Italy, Italy
    Recruiting
  • Department of Periodontology and Research Implant Center, School of Dental Medicine, University of Belgrade
    Belgrade, Serbia
    Recruiting
07

Registry details

Key details

Study ID
NCT07671963
Lead sponsor
University of Belgrade
Collaborators
Cittadella Universitaria
Responsible party
Iva Milinkovic (Professor, University of Belgrade) — Principal investigator
First posted
Jun 26, 2026
Start date
Jul 1, 2026 (estimated)
Primary completion
Feb 1, 2027 (estimated)
Completion
Mar 1, 2027 (estimated)
Last update
Jun 26, 2026

Study contacts

Iva Z Milinkovic, DDS, PhD
Contact
iva.milinkovic@gmail.com
+381113629201
Iva Z Milinkovic, DDS, PhD
principal investigator · School of Dental Medicine, University of Belgrade, Implant Research Centre and Department of Periodontology and Oral Medicine

Oversight

FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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