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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >In vivo preclinical efficacy of a PDLLA/PGA porous copolymer for dental application.
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In vivo preclinical efficacy of a PDLLA/PGA porous copolymer for dental application.

机译:牙科应用PDLLA / PGA多孔共聚物的体内临床临床疗效。

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This study aimed to analyze surface morphology and physical-chemical properties of a copolymer of polylactic/polyglycolic acid (Fisiograft, Ghimas SpA, Casalecchio di Reno, Italy) by scanning electron microscopy (SEM), porosimetry, and rheological analysis. Then the material was implanted in vivo to test its efficacy at promoting bone healing and new bone formation in postextraction sockets. Under general anaesthesia, sockets were created in 12 minipigs and then randomly filled with the porous copolymer in SPONGE or GEL form and compared with commercial BioOss (Geistlich Biomaterials) and Biocoral (Inoteb, France). At 15, 30, and 60 days from surgery, the newly formed trabecular bone quality was evaluated by means of histology and histomorphometry. The SEM and rheological analyses performed on GEL showed a surface microporosity and a rheological shear thinning behavior, whereas the SPONGE porosimetric measurements revealed larger pores. At 15 days, the new bone regrowth was observed in all treated sockets but appeared immature, as the trabeculae were very dense and thin. At 30 days, GEL and SPONGE were degraded, and the sockets were filled with bone that, in terms of bone volume fraction, trabecular number, and separation, was not statistically different from normal bone.
机译:本研究旨在通过扫描电子显微镜(SEM),孔隙测定法和流变分析来分析聚乳酸/聚乙醇酸(FISIORAPRAPL,GHIMAS SPA,CASALECCHIO DI Reno,Italy)的共聚物的表面形态和物理化学性质。然后将该材料植入体内以在促进骨愈合和后伸展插座中促进骨愈合和新骨形成的功效。在全身麻醉下,在12微像素中产生插座,然后在海绵或凝胶形式中随机填充多孔共聚物,并与商业生物材料(Geistlich生物材料)和生物(法国Inoteb,France)进行比较。从手术到15,30和60天,通过组织学和组织形态学评估新形成的小梁骨质。在凝胶上进行的SEM和流变分析表明表面微孔度和流变剪切稀疏行为,而海绵孔隙测量结果揭示了较大的孔隙。在15天,在所有处理的插座中观察到新的骨再生,但出现不成熟,因为小梁非常致密和薄。在30天,凝胶和海绵降解,并且骨骼填充骨骼,就骨体积分数,小梁数和分离而言,与正常骨没有统计学不同。

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