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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Exogenous VEGF introduced by bioceramic composite materials promotes the restoration of bone defect in rabbits
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Exogenous VEGF introduced by bioceramic composite materials promotes the restoration of bone defect in rabbits

机译:通过生物陶瓷复合材料引入的外源VEGF促进了兔子骨缺损的恢复

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摘要

This study aimed to investigate the effect of exogenous vascular endothelial growth factor (VEGF) introduced by bioceramic composite materials on jawbone defect. Rabbits were randomly divided into four groups: control, sham, model, and stent. In the model group, holes of jawbone defect were created through surgery. In the stent group, rabbits with jawbone defect were treated with polyether ketone (PEK)/biphasic bioceramic ((PEK-BBC)) composite materials encapsulating VEGF. At 4, 8, and 16 weeks post-operation, HE and Van Gieson staining of jawbones were performed to characterize the repair status of the bone defect. For all time intervals, we found intact bone structures in the control and sham groups and there was no improvement in the bone defect position in the model group. However, in the stent group, we excitingly observed the growth of many osteocytes in the margin of stents at 8 and 16 weeks. RT-PCR, western blot, and immunofluorescence analysis were conducted to investigate the VEGF expression at 4, 8, and 16 weeks post-operation. At 8 weeks, the level of VEGF in the model group was sharply downregulated as compared with the control group (P .05) and interestingly, the stent group had a much higher level of VEGF than the model group (P .05). At 16 weeks, the VEGF expression in the model group was further reduced comparing to the control group (P .05), which was also elevated to a relative high level by the stent treatment (P .05). As for the sham group, the VEGF level was stable without any difference from the control group at all time intervals. Therefore, exogenous VEGF introduced by bioceramic composite materials promoted the restoration of bone defect in rabbits.
机译:该研究旨在探讨生物陶瓷复合材料对颚骨缺损的外源血管内皮生长因子(VEGF)的影响。兔子随机分为四组:控制,假,模型和支架。在模型组中,通过手术创造了Jawbone缺陷的孔。在支架组中,具有颚骨缺损的兔子用聚醚酮(PEK)/双相生物陶瓷((PEK-BBC))复合材料进行处理包封VEGF。在操作后4,8和16周,他和van Gieson染色的颚骨染色以表征骨缺损的修复状态。对于所有时间间隔,我们发现控制和假组中的完整骨结构,模型组中没有改善骨缺陷位置。然而,在支架组中,我们令人兴奋地观察到8和16周的支架边缘中许多骨细胞的生长。进行RT-PCR,Western印迹和免疫荧光分析,以研究操作后4,8和16周的VEGF表达。在8周,与对照组相比,模型组中的VEGF水平急剧下调(P <.05),有趣的是,支架组的VEGF水平高于模型组(P <。 05)。在16周时,与对照组(P <.05)进一步降低了模型组中的VEGF表达,其也通过支架处理升高至相对高水平(P <.05)。至于假组,VEGF水平稳定,无需在所有时间间隔与对照组有任何差异。因此,由生物陶瓷复合材料引入的外源VEGF促进了兔子骨缺损的恢复。

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