4.0 Article

The effect of bacterial cellulose membrane compared with collagen membrane on guided bone regeneration

期刊

JOURNAL OF ADVANCED PROSTHODONTICS
卷 7, 期 6, 页码 484-495

出版社

KOREAN ACAD PROSTHODONTICS
DOI: 10.4047/jap.2015.7.6.484

关键词

Bacterial cellulose membrane; Collagen membrane; Guided bone regeneration; Rat calvarial defect

资金

  1. Korean Health Technology R&D Project through the Korean Health Industry Development Institute (KHIDI) - Korean Ministry of Health Welfare [HI14C3309]
  2. iPET (Korea Institute of Planning and Evaluation for Technology in Food, Agriculture, Forestry and Fisheries), Ministry of Agriculture, Food and Rural Affairs [2013100659]

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PURPOSE. This study was to evaluate the effects of bacterial cellulose (BC) membranes as a barrier membrane on guided bone regeneration (GBR) in comparison with those of the resorbable collagen membranes. MATERIALS AND METHODS. BC membranes were fabricated using biomimetic technology. Surface properties were analyzed, Mechanical properties were measured, in vitro cell proliferation test were performed with NIH3T3 cells and in vivo study were performed with rat calvarial defect and histomorphometric analysis was done. The Mann-Whitney U test and the Wilcoxon signed rank test was used (alpha<.05). RESULTS. BC membrane showed significantly higher mechanical properties such as wet tensile strength than collagen membrane and represented a three-dimensional multilayered structure cross-linked by nano-fibers with 60 % porosity. In, vitro study, cell adhesion and proliferation were observed on BC membrane. However, morphology of the cells was found to be less differentiated, and the cell proliferation rate was lower than those of the cells on collagen membrane. In vivo study, the grafted BC membrane did not induce inflammatory response, and maintained adequate space for bone regeneration. An amount of new bone formation in defect region loaded with BC membrane was significantly similar to that of collagen membrane application. CONCLUSION. BC membrane has potential to be used as a barrier membrane, and efficacy of the membrane on GBR is comparable to that of collagen membrane.

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