EAP® Abutments
EAP(R) Produktions- und Patentverwertungs GmbH · Quelle
EAP® Abutments are implant abutments featuring a unique titanium shell design where titanium is always in contact with gingiva. The product line is supported by 150+ peer-reviewed scientific studies validating core design principles:
Key Design Features
- Titanium Shell Design: Titanium always in contact with gingiva, ensuring zero monomer release from polymeric materials
- Unique Material Configuration: Uses titanium to create a barrier against resin toxicity while supporting soft tissue integration
Scientific Validation (150+ Peer-Reviewed Studies)
Core Design Principles:
Polymer Toxicity Studies: Confirm monomers (Bis-GMA, UDMA, TEGDMA, HEMA) are cytotoxic. EAP® uses titanium at gingiva with zero monomer release, eliminating a major source of peri-implant inflammation.
Cement Studies: 81% of peri-implantitis cases show cement residue. EAP® positions adhesive interface far from bone, reducing cement-related bone loss from 1.37mm (methacrylate cement) to 0.07mm.
Cell Attachment Studies: Anodized titanium enhances fibroblast attachment. EAP® titanium surface supports soft tissue integration through:
- Improved fibroblast attachment and proliferation
- Enhanced collagen synthesis
- Formation of hemidesmosome-like epithelial structures
- Optimized soft tissue barrier function
One-Abutment-One-Time Concept: 0.19mm less bone loss with definitive abutments. EAP® supports patient-specific geometry from day 1, eliminating repeated disconnection/reconnection trauma.
Research Categories:
1. Manipulation & Aesthetics (41 Studies)
- Emergence profile optimization for soft tissue stability
- AI-assisted abutment planning for optimal aesthetics
- One Customized Abutment One Time concept
- Influence of abutment height on marginal bone loss
- Surface modifications for soft tissue seal reinforcement
- Aesthetic outcomes of customized vs. conventional abutments
- One-Abutment-One-Time concept validation
- Platform switching and marginal bone preservation
- Immediate loading with definitive abutments
- Zirconia vs. titanium long-term stability
- Digital workflows for improved precision
- And 30+ additional studies on manipulation, design, and clinical outcomes
2. Polymer & Resin Toxicity (43 Studies)
The research confirms EAP®'s core advantage - eliminating direct monomer contact with soft tissue:
- Bis-GMA > UDMA > TEGDMA > HEMA toxicity ranking confirmed
- Methacrylate monomers cause cytotoxic reactions through:
- Oxidative stress and glutathione depletion
- DNA double-strand breaks
- Inflammatory responses and apoptosis
- Epigenetic modifications
- BPA release from dental composites (70% of tested materials show measurable release in 24h)
- Incomplete polymerization leads to residual monomer release
- Cell attachment and proliferation inhibition
- Long-term monomer elution continues over 6+ months
- 3D-printed materials show higher cytotoxicity than conventional alternatives
3. Cell Attachment on Titanium (38 Studies)
Documentation of how EAP®'s titanium design supports superior soft tissue integration:
- TiO₂ nanotubes improve fibroblast attachment and reduce bacterial colonization
- Anodized titanium surfaces show optimized biocompatibility
- Titanium: optimal cell attachment; Zirconia: comparable; PEEK: significantly reduced
- Surface modification through anodization improves:
- Cell attachment and proliferation
- Gene expression for osteogenic differentiation
- Hydrophilicity and nanoporous structure
- Apatite formation and bone integration
- Moderate surface roughness (Ra 0.5-2 μm) shows optimal fibroblast attachment
- Fibroblast attachment 30% higher on anodized vs. non-anodized surfaces
- Titanium enables true epithelial attachment with hemidesmosome formation
- Long-term soft tissue stability over 15 years documented
4. Cement Residue Problems (16 Studies)
EAP® design eliminates the cement problem through strategic abutment design:
- Excess cement found in 68% of implants with peri-implantitis (often undetected)
- Cement residues cause progressive bone resorption and inflammation
- Methacrylate cement associated with 1.37mm bone loss vs. 0.07mm with zinc oxide-eugenol (20-fold difference)
- Cement-mediated peri-implantitis accounts for 1.9-75% of implant failures
- Digital workflows reduce cement excess by 85%
- Subgingival margins show significantly more excess cement
- Custom abutments with supragingival margins significantly reduce cement problems
- Customized abutments effectively minimize cement risks
5. Allergies & Biocompatibility (12 Studies)
- Titanium allergies are rare (0.6% of patients with suspected metal allergy)
- Resin cement residue triggers local allergic reactions and inflammatory responses
- Cross-reactivity between dental methacrylates (70% of HEMA allergy patients react to BisGMA/TEGDMA)
- HEMA contact allergy: 15% prevalence in dental professionals
- Alternative materials for allergic patients: Titanium, zirconia, and glass-ceramic are safe
- Acrylate allergies associated with peri-implant complications (18% of implant failures)
- BisGMA allergy in 8.6% of dental professionals
- Methacrylates are most common allergens in occupational dentistry
Clinical Applications
Indication: Implant-supported crown and bridge restorations where:
- Soft tissue health is a priority
- Polymer toxicity needs to be eliminated
- Long-term bone preservation is critical
- Aesthetic outcomes require precise emergence profile design
- Digital workflow optimization is desired
- One-Abutment-One-Time protocol is preferred
Key Benefits:
- Zero monomer release from polymeric materials at soft tissue interface
- Reduced bone loss through cement positioning (0.19mm less with definitive abutment)
- Enhanced soft tissue integration through anodized titanium surface
- Elimination of repeated abutment disconnection trauma
- Superior long-term stability and predictable aesthetic outcomes
- Reduced risk of peri-implantitis through cement control and biocompatible design
- Suitable for allergy-prone patients (titanium is biocompatible, no resins at soft tissue)
- Support for digital workflows and patient-specific customization
Produktinformationen
| Hersteller | EAP(R) Produktions- und Patentverwertungs GmbH |
|---|---|
| Moq | Patient-specific CAD/CAM fabrication |
| Design | Unique titanium shell design with titanium in contact with gingiva |
| Oberfläche | Anodized titanium for enhanced soft tissue integration |
| Material | Titanium shell with patient-specific design options |
| Indikation | Implant-supported single crowns and bridges |
| Key Advantage | Zero monomer release at soft tissue interface |
| Biocompatibility | Titanium base eliminates polymer toxicity, suitable for allergy patients |
| Retention Options | Screw-retained or cement-retained (with controlled margins) |