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Preparation of 3D Collagen Gels and Microchannels for the Study of 3D Interactions In Vivo
Published on: May 9, 2016
Do collagen membranes with different thickness-related mechanical properties affect the outcomes of lateral bone
Dongseob Lee1,2, Young-Chang Ko1, Ki-Tae Koo1
1Department of Periodontology, School of Dentistry and Dental Research Institute, Seoul National University, 101 Daehak-ro, Jongno-gu, Seoul, 03080, Republic of Korea.
Objectives:
This study evaluated immunohistochemical profiles associated with guided bone regeneration (GBR) using collagen membranes with different thickness-related mechanical properties to characterize membrane-related biological responses during lateral bone augmentation.
Methods:
Standardized mandibular defects in beagle dogs were grafted with bone substitutes and covered with one of two collagen membranes with different thickness-related mechanical properties or left uncovered. At 8 and 16 weeks, tissues were analyzed for markers associated with osteogenesis (ALP), vascular/perivascular and myofibroblast-associated responses (α-SMA), inflammation-related cell profiles (iNOS and CD206), and bone remodeling (TRAP, Cathepsin K, and collagen type I).
Results:
At 8 weeks, the FM group showed a trend toward higher numbers of CD206-positive cells in the coronal region. iNOS-positive cells did not differ significantly among groups in any region. However, most macrophage-related outcomes were not statistically significant. The SM group exhibited significantly greater collagen type I deposition, particularly in deeper regions, although this appeared to represent early unmineralized matrix rather than enhanced bone formation. TRAP-positive cells were more frequently observed in membrane-covered groups at both time points, mainly around biomaterials, suggesting remodeling-related activity. ALP, α-SMA, and Cathepsin K showed no significant intergroup differences. At 16 weeks, most immunohistochemical differences had diminished across all groups.
Conclusions:
Collagen membranes with different thickness-related mechanical properties were associated with distinct early tissue responses during GBR healing. The FM group showed trends toward increased CD206-positive cells, whereas the SM group exhibited greater early collagen type I deposition. Because most inflammation-related outcomes were not statistically significant, these findings should be interpreted cautiously and considered exploratory.
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