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首页> 外文期刊>BioMedical Engineering OnLine >Adrenomedullin delivery in microsphere-scaffold composite for remodeling of the alveolar bone following tooth extraction: an experimental study in the rat
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Adrenomedullin delivery in microsphere-scaffold composite for remodeling of the alveolar bone following tooth extraction: an experimental study in the rat

机译:肾上腺髓质素在微球-支架复合物中递送以拔牙后牙槽骨重塑:在大鼠中的实验研究

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Background Alveolar ridge resorption, as a significant problem in implant and restorative dentistry, has long been considered as an inevitable outcome following tooth extraction. Recently, adrenomedullin (ADM) is reported to be able to stimulate the proliferation and migration of various cells including osteoblasts. The purpose of this study was to investigate the influence of local ADM application in the tooth extraction socket in vivo. Methods Chitosan micropheres were developed by an emulsion-ionic cross-linking method for ADM delivery. Poly (L -lactic-co-glycolic) acid (PLGA) and nano-hydroxyapatite (nHA) were used to prepare scaffolds to contain the micrspheres with ADM. In vivo experiment was evaluated by transplanting the composite into the rat socket right after the incisor extraction. After 4, 8, 12?weeks implantation, radiographic and histological tests were carried out to evaluate the effect of released ADM on the alveolar bone. Results The microspheres had a spherical structure and a relative rough and uniform surface, and the particle size was under a normal distribution, with the average diameter of 38.59?μm. The scaffolds had open and interconnected pores. In addition, the high porosity of the composite was 88.93%. Radiographic and histological examination revealed that the PLGAHA/CMs/ADM composite could accelerate the alveolar bone remodeling and reduce the residual ridge resorption compared with the PLGAHA/CMs scaffold. Conclusions The results of this study suggest that local application of ADM has the potential to preserve the residual alveolar ridge and accelerate the alveolar bone remodeling.
机译:背景技术牙槽吸收,作为植入物和修复牙科中的重要问题,长期以来一直被认为是拔牙后的必然结果。最近,据报道肾上腺髓质素(ADM)能够刺激包括成骨细胞在内的各种细胞的增殖和迁移。本研究的目的是研究局部ADM应用在体内拔牙窝中的影响。方法采用乳液-离子交联法制备壳聚糖微球,用于ADM的递送。使用聚(L-乳酸-乙醇酸)酸(PLGA)和纳米羟基磷灰石(nHA)制备包含ADM微球的支架。在切牙拔除后立即将复合材料移植到大鼠窝中,以评估体内实验。植入4、8、12周后,进行了射线照相和组织学测试,以评估释放的ADM对牙槽骨的影响。结果微球呈球形结构,表面较粗糙均匀,粒径呈正态分布,平均粒径为38.59μm。支架具有开放和相互连接的孔。此外,复合材料的高孔隙率是88.93%。影像学和组织学检查显示,与PLGA / nHA / CMs支架相比,PLGA / nHA / CMs / ADM复合材料可以促进牙槽骨重塑并减少残留的脊骨吸收。结论这项研究的结果表明,局部应用ADM有可能保留残余的牙槽并加速牙槽骨重塑。

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