15 Sep 2026 | UPCOMING WEBINAR
Adequate peri implant and periodontal soft tissue volume and quality are increasingly recognized as key determinants of long term treatment success. Tissue thickness, the width of keratinized tissue, and vascular supply all contribute to marginal bone preservation, resistance to inflammatory complications, predictable wound healing, and long term esthetic outcomes around teeth and implants.
While autogenous connective tissue grafts remain the clinical gold standard for soft tissue augmentation, their routine use comes with real limitations:
- Donor site morbidity
- Increased surgical time
- Limited tissue availability
- Technique sensitive harvesting procedures
These challenges become even more relevant when treating multiple sites or patients seeking minimally invasive treatment options.
Acellular dermal matrices have emerged as a proven alternative, enabling soft tissue augmentation without the need for a second surgical site.
mucoderm® — the proven alternative to connective tissue graft
- Autograft free, no donor site required
- Naturally remodels into the patient’s own tissue within approximately 6 to 9 months
- Rapid revascularization supported by a porous 3D collagen structure
- Highly biocompatible, native collagen matrix for safe and predictable tissue regeneration
- Backed by 15 years of clinical experience
As a native dermal matrix, mucoderm® preserves the natural three dimensional collagen architecture, providing a scaffold that supports rapid blood infiltration, early revascularization, cellular repopulation, and progressive remodeling into the patient’s own soft tissue.
The result is predictable soft tissue integration with reduced patient morbidity and simplified clinical workflows.
What you’ll learn in this webinar:
- The biological principles behind soft tissue matrix integration
- Clinical indications for acellular dermal matrix use
- Surgical handling and practical techniques for stable graft fixation
- How to support predictable healing and long term peri implant and periodontal soft tissue stability
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