Related Experiment Video
Updated: Mar 1, 2026

Biological Compatibility Profile on Biomaterials for Bone Regeneration
Published on: November 16, 2018
Biologic Functionalization of a Biphasic Bone Substitute With Enamel Matrix Derivative Modulates Early Foreign Body
Tadas Korzinskas1,2, Sanja Stojanovic3,4, Stevo Najman3,4
1Department of Prosthodontics, Geriatric Dentistry and Craniomandibular Disorders, Institute for Dental and Craniofacial Sciences, Benjamin Franklin Charité Campus, Berlin, Germany.
Background/Aim:
Biologic enhancement of bone grafts with enamel matrix derivative (EMD) may improve regenerative outcomes by modulating the host tissue response. This study evaluated the in vivo tissue reaction to a biphasic bone substitute (Maxresorb®), used alone or in combination with EMD, in a subcutaneous mouse model.
Materials And Methods:
Forty BALB/c mice received subcutaneous implants of Maxresorb®, EMD, Maxresorb® + EMD, or underwent sham surgery. Tissue samples were harvested at 15- and 30-days post-implantation. Histological and immunohistochemical analyses were performed to assess inflammation, neovascularization, fibrosis, and the presence of macrophages and biomaterial-associated multinucleated giant cells (BMGCs). Statistical analysis was conducted using ANOVA (p≤0.05).
Results:
The Maxresorb® + EMD group showed higher inflammatory scores, increased numbers of macrophages and BMGCs, and enhanced neovascularization compared with the other groups, particularly at 30 days. Despite this elevated cellular activity, all test conditions were classified as non-irritant or slightly irritant according to ISO 10993-6.
Conclusion:
The combination of EMD and Maxresorb® enhanced early tissue responses without adverse effects. These findings support the biocompatibility of this combination and suggest potential regenerative benefits through biologically driven material functionalization.
More Related Videos
04:37Half-segmental Diaphyseal Bone Defect Model in Rats for Evaluating Bone Substitute Performance in Load-bearing Regions
Published on: December 30, 2025
07:29Author Spotlight: Advanced Techniques for Characterizing Tissue Mineralization in Bone Regeneration Research
Published on: September 27, 2024