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Dimensionally stable and bioactive membrane for guided bone regeneration: An in vitro study

机译:尺寸稳定且具有生物活性的膜,可用于引导性骨再生:一项体外研究

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摘要

Composite fibrous electrospun membranes based on poly(dl-lactide) (PLA) and poly(ε-caprolactone) (PCL) were engineered to include borate bioactive glass (BBG) for the potential purposes of guided bone regeneration (GBR). The fibers were characterized using scanning and transmission electron microscopies, which respectively confirmed the submicron fibrous arrangement of the membranes and the successful incorporation of BBG particles. Selected mechanical properties of the membranes were evaluated using the suture pullout test. The addition of BBG at 10 wt % led to similar stiffness, but more importantly, it led to a significantly stronger (2.37 ± 0.51 N mm) membrane when compared with the commercially available Epiguide® (1.06 ± 0.24 N mm) under hydrated conditions. Stability (shrinkage) was determined after incubation in a phosphate buffer solution from 24 h up to 9 days. The dimensional stability of the PLA:PCL-based membranes with or without BBG incorporation (10.07-16.08%) was similar to that of Epiguide (14.28%). Cell proliferation assays demonstrated a higher rate of preosteoblasts proliferation on BBG-containing membranes (6.4-fold) over BBG-free membranes (4- to 5.8-fold) and EpiGuide (4.5-fold), following 7 days of in vitro culture. Collectively, our results demonstrated the ability to synthesize, via electrospinning, stable, polymer-based submicron fibrous BBG-containing membranes capable of sustaining osteoblastic attachment and proliferation-a promising attribute in GBR.
机译:基于聚(dl-丙交酯)(PLA)和聚(ε-己内酯)(PCL)的复合纤维电纺膜经过工程设计,可包含硼酸盐生物活性玻璃(BBG),以用于引导性骨再生(GBR)的潜在目的。使用扫描和透射电子显微镜对纤维进行表征,这分别证实了膜的亚微米纤维排列和BBG颗粒的成功掺入。使用缝线拉拔测试评估膜的选定机械性能。在水合条件下,与市售的Epiguide®(1.06±0.24 N mm)相比,添加10 wt%的BBG可获得相似的硬度,但更重要的是,它导致膜明显更坚固(2.37±0.51 N mm)。在磷酸盐缓冲液中孵育24小时至9天后,确定稳定性(收缩)。结合或不结合BBG的PLA:PCL基膜的尺寸稳定性(10.07-16.08%)与Epiguide的尺寸稳定性(14.28%)相似。细胞增殖分析表明,在体外培养7天后,含成骨细胞的膜上成骨细胞的增殖率较高(6.4倍),高于无BBG膜(4至5.8倍)和EpiGuide(4.5倍)。总体而言,我们的研究结果证明了通过静电纺丝能够合成稳定的,基于聚合物的亚微米纤维BBG膜的能力,该膜能够维持成骨细胞的附着和增殖-这是GBR的一项有希望的属性。

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