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首页> 外文期刊>Polymers >In Vitro and in Vivo Study of Poly(Lactic– co –Glycolic) (PLGA) Membranes Treated with Oxygen Plasma and Coated with Nanostructured Hydroxyapatite Ultrathin Films for Guided Bone Regeneration Processes
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In Vitro and in Vivo Study of Poly(Lactic– co –Glycolic) (PLGA) Membranes Treated with Oxygen Plasma and Coated with Nanostructured Hydroxyapatite Ultrathin Films for Guided Bone Regeneration Processes

机译:氧等离子体处理并涂有纳米结构羟基磷灰石超薄膜的引导性骨再生过程的聚乳酸-共-乙醇酸(PLGA)膜的体外和体内研究

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The novelty of this study is the addition of an ultrathin layer of nanostructured hydroxyapatite (HA) on oxygen plasma modified poly(lactic– co –glycolic) (PLGA) membranes (PO 2 ) in order to evaluate the efficiency of this novel material in bone regeneration. Methods: Two groups of regenerative membranes were prepared: PLGA (control) and PLGA/PO 2 /HA (experimental). These membranes were subjected to cell cultures and then used to cover bone defects prepared on the skulls of eight experimental rabbits. Results: Cell morphology and adhesion of the osteoblasts to the membranes showed that the osteoblasts bound to PLGA were smaller and with a lower number of adhered cells than the osteoblasts bound to the PLGA/PO 2 /HA membrane ( p < 0.05). The PLGA/PO 2 /HA membrane had a higher percentage of viable cells bound than the control membrane ( p < 0.05). Both micro-CT and histological evaluation confirmed that PLGA/PO 2 /HA membranes enhance bone regeneration. A statistically significant difference in the percentage of osteoid area in relation to the total area between both groups was found. Conclusions: The incorporation of nanometric layers of nanostructured HA into PLGA membranes modified with PO 2 might be considered for the regeneration of bone defects. PLGA/PO 2 /HA membranes promote higher osteosynthetic activity, new bone formation, and mineralisation than the PLGA control group.
机译:这项研究的新颖之处在于,在氧等离子体改性的聚乳酸-乙醇酸共聚物(PLGA)膜(PO 2)上增加了纳米结构羟基磷灰石(HA)的超薄层,以评估这种新型材料在骨骼中的功效。再生。方法:制备两组再生膜:PLGA(对照)和PLGA / PO 2 / HA(实验)。这些膜经过细胞培养,然后用于覆盖八只实验兔头骨上制备的骨缺损。结果:成骨细胞与细胞膜的细胞形态和粘附性表明,与PLGA / PO 2 / HA膜结合的成骨细胞相比,与PLGA结合的成骨细胞更小,粘附细胞的数量更少(p <0.05)。 PLGA / PO 2 / HA膜结合的活细胞百分比高于对照膜(p <0.05)。显微CT和组织学评估均证实PLGA / PO 2 / HA膜可增强骨再生。发现两组之间类固醇面积百分比相对于总面积的统计学差异显着。结论:将纳米结构HA的纳米层掺入PO 2修饰的PLGA膜中可考虑用于骨缺损的再生。与PLGA对照组相比,PLGA / PO 2 / HA膜促进更高的骨合成活性,新的骨形成和矿化作用。

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