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Preparation and Characterization of Resorbable Bacterial Cellulose Membranes Treated by Electron Beam Irradiation for Guided Bone Regeneration

机译:电子束辐照引导骨再生处理可吸收细菌纤维素膜的制备与表征

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摘要

Bacterial cellulose (BC) is an excellent biomaterial with many medical applications. In this study, resorbable BC membranes were prepared for guided bone regeneration (GBR) using an irradiation technique for applications in the dental field. Electron beam irradiation (EI) increases biodegradation by severing the glucose bonds of BC. BC membranes irradiated at 100 kGy or 300 kGy were used to determine optimal electron beam doses. Electron beam irradiated BC membranes (EI-BCMs) were evaluated by scanning electron microscopy (SEM), attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy, thermal gravimetric analysis (TGA), and using wet tensile strength measurements. In addition, in vitro cell studies were conducted in order to confirm the cytocompatibility of EI-BCMs. Cell viabilities of NIH3T3 cells on 100k and 300k EI-BCMs (100 kGy and 300 kGy irradiated BC membranes) were significantly greater than on NI-BCMs after 3 and 7 days (p < 0.05). Bone regeneration by EI-BCMs and their biodegradabilities were also evaluated using in vivo rat calvarial defect models for 4 and 8 weeks. Histometric results showed 100k EI-BCMs exhibited significantly larger new bone area (NBA; %) than 300k EI-BCMs at 8 weeks after implantation (p < 0.05). Mechanical, chemical, and biological analyses showed EI-BCMs effectively interacted with cells and promoted bone regeneration.
机译:细菌纤维素(BC)是一种出色的生物材料,具有许多医疗应用。在这项研究中,使用辐照技术制备可吸收的BC膜用于引导性骨再生(GBR),用于牙科领域。电子束照射(EI)通过切断BC的葡萄糖键来增加生物降解。使用以100 kGy或300 kGy照射的BC膜确定最佳电子束剂量。通过扫描电子显微镜(SEM),衰减全反射-傅立叶变换红外(ATR-FTIR)光谱,热重分析(TGA)和湿法拉伸强度测量来评估电子束辐照的BC膜(EI-BCM)。另外,进行了体外细胞研究以证实EI-BCM的细胞相容性。 3天和7天后,在100k和300k EI-BCM(100 kGy和300 kGy辐照的BC膜)上,NIH3T3细胞的细胞活力显着高于在NI-BCM上(p <0.05)。还使用体内大鼠颅盖骨缺损模型评估了EI-BCM的骨再生及其生物降解能力,持续了4周和8周。直方图结果表明,植入后8周,100k EI-BCM的新骨面积(NBA;%)明显大于300k EI-BCM(p <0.05)。机械,化学和生物学分析表明,EI-BCM有效地与细胞相互作用并促进了骨再生。

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