OsteoGen™ Technology
The power of OsteoGen is in our proprietary bioactive crystal technology (BCT) which creates a robust environment for regeneration. Each shape is designed to simplify grafting without compromising outcomes utilizing Bioactive Crystal Technology (BCT) which contains a bioactive, resorbable calcium phosphate
combined with Type I Bovine Achilles Tendon Collagen.


OsteoGen™ Strips
The OsteoGen Bone Grafting Strip infuses bone graft into a collagen strip to eliminate the problems associated with particulate migration.

OsteoGen™ Blocks
OsteoGen® Block is used in onlay grafting procedures and is malleable and will adapt to the contours of defect site.

OsteoGen™ Crystals
OsteoGen® Crystals are bioactive, resorbable grafting crystals designed to mimic the structure of human trabecular bone and support natural bone regeneration.
OsteoGen™ Strips
Resorbable Mineralized Collagen Bone Graft
OsteoGen® Strips offer a simple, effective solution for bone grafting procedures. Made from mineralized collagen, they conform closely to the treatment site to support predictable bone regeneration while helping maintain graft stability. Easy to place and highly absorbent, they are ideal for implant sites, extraction sockets, and sinus lift procedures.

- Flexible strips easily conform to grafting site, eliminating gaps in irregular bony walls.
- Eliminates particulate migration issues, especially in the sinus
- Use with immediately placed implants in extraction sites to fill any potential gaps between the implant and socket wall
- Can be folded or layered multiple times to create additional volume, and is easily packed into the defect space
- Extremely porous and hydrophilic. Will soak up endogenous blood, or can be used as a mineralized scaffold for added growth factors or plasma from platelet concentrates
OsteoGen™ Block
Resorbable Mineralized Collagen Malleable Bone Block
The Malleable OsteoGen Bone Block® is designed for onlay grafting procedures, working seamlessly with TriStar™ Screws while adapting easily to the contours of the defect site. Composed of a bioactive, resorbable calcium phosphate crystal that closely resembles human bone, it supports predictable bone regeneration and remodeling. The bovine Achilles tendon collagen carrier enables easy placement, eliminating the challenges associated with packing and securing particulate grafts in larger defects. Its Type I collagen matrix absorbs and delivers blood to the graft site, supporting early angiogenesis and the formation of new bone.

- Malleable design easily adapts to defect-site anatomy
- Ideal for onlay grafting procedures when used with TriStar™ Screws
- Bioactive, resorbable calcium phosphate closely mimics human bone
- Collagen carrier simplifies placement and eliminates particulate graft handling challenges
- Type I collagen promotes blood delivery, early angiogenesis, and bone formation
OsteoGenTM Crystals
Non-Ceramic Bioactive Resorbable Calcium Phosphate Bone Grafting Crystals
OsteoGen® Crystals are bioactive, resorbable calcium apatite grafting crystals designed to mimic the structure of human trabecular bone and support natural bone regeneration. Their unique 360° hydrophilic crystal lattice readily absorbs blood and provides an ideal environment for cell proliferation, vascularization, and new bone formation. Commonly used for socket preservation and other bone grafting procedures, the crystals gradually resorb as they are replaced by native bone. Initially radiolucent at placement, they become radiopaque within 4 to 6 months, allowing clinicians to easily monitor healing and bone development prior to implant placement.

- Mimics the structure and properties of human trabecular bone to support predictable bone regeneration
- 360° hydrophilic crystal lattice enhances blood infiltration, cell proliferation, and graft integration
- Helps control connective tissue migration while promoting new bone formation
- Resorbs over time and is replaced by the patient’s natural bone
- Transitions from radiolucent to radiopaque within 4 to 6 months for easy radiographic evaluation
