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Biocompatibility, resorption and biofunctionality of a new synthetic biodegradable membrane for guided bone regeneration

机译:一种用于引导骨再生的新型合成生物降解膜的生物相容性,吸收和生物功能性

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摘要

Membranes for guided bone regeneration (GBR) were prepared from the synthetic biodegradable polymer poly-D,L-lactic/glycolic acid (PLGA). This GBR membrane has a bi-layered structure with a dense film to prevent gingival fibroblast ingrowth and ensure mechanical function, and a micro-fibrous layer to support colonization by osteogenic cells and promote bone regeneration. Hydrolysis and biodegradation were both studied in vitro through soaking in phosphate buffered saline (PBS) and in vivo by implantation in the subcutis of rats for 4, 8, 16, 26, 48 and 52 weeks. Histology revealed an excellent colonization of the micro-fibrous layer by cells with a minimal inflammatory reaction during resorption. GBR using the synthetic PLGA membrane was evaluated on critical-size calvaria defects in rats for 4 and 8 weeks. Radiographs, micro-computed tomography and histology showed bone regeneration with the PLGA membrane, while the defects covered with a collagen membrane showed a limited amount of mineralized bone, similar to that of the defect left empty. The biofunctionality of the PLGA membranes was also compared to collagen membranes in mandible defects in rabbits, associated or not with beta-tricalcium phosphate granules. This study revealed that the bi-layered synthetic membrane made of PLGA was safer, more biocompatible, and had a greater controlled resorption rate and bone regeneration capacity than collagen membranes. This new PLGA membrane could be used in pre-implantology and peri-odontology surgery.
机译:由合成的可生物降解的聚合物聚D,L-乳酸/乙醇酸(PLGA)制备用于引导骨再生的膜(GBR)。该GBR膜具有双层结构,其具有致密的膜以防止牙龈成纤维细胞向内生长并确保机械功能,并具有微纤维层以支持成骨细胞定居并促进骨再生。水解和生物降解都通过在磷酸盐缓冲液(PBS)中浸泡进行了体外研究,并通过在大鼠皮下植入4、8、16、26、48和52周进行了体内研究。组织学揭示了细胞在微纤维层上的良好定殖,在吸收过程中炎症反应最小。使用合成PLGA膜对GBR进行了4周和8周的大鼠临界大小颅骨缺损评估。放射线照相,显微计算机断层扫描和组织学检查显示,PLGA膜可促进骨再生,而胶原膜覆盖的缺损则可显示有限的矿化骨,与缺损的缺损相似。在兔子的下颌骨缺损中,也将PLGA膜的生物功能与胶原膜进行了比较,无论是否与β-磷酸三钙颗粒相关。这项研究表明,由PLGA制成的双层合成膜比胶原膜更安全,更具生物相容性,并具有更大的可控吸收率和骨再生能力。这种新的PLGA膜可用于植入前和牙周手术。

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