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SDF-1与VEGF联合应用对大鼠股骨牵张成骨的影响。

The effects of SDF-1 combined application with VEGF on femoral distraction osteogenesis in rats.

作者信息

Fu Fangang, Li Mengqi, Yang Shuye, Du Gangqiang, Xu Yingjiang, Jiang Jianhao, Jia Long, Zhang Kai, Li Peng

机构信息

Department of Orthopaedics, Yantai Affiliated Hospital of Binzhou Medical University, Yantai, China.

Department of Orthopedics, Binzhou Medical University Hospital, Binzhou, 256603 China.

出版信息

Open Life Sci. 2024 Apr 17;19(1):20220851. doi: 10.1515/biol-2022-0851. eCollection 2024.

Abstract

Bone regeneration and mineralization can be achieved by means of distraction osteogenesis (DO). In the present study, we investigated the effect of stromal cell-derived factor 1 (SDF-1) and vascular endothelial growth factor (VEGF) on the new bone formation during DO in rats. Forty-eight Sprague-Dawley rats were randomized into four groups of 12 rats each. We established the left femoral DO model in rats and performed a mid-femoral osteotomy, which was fixed with an external fixator. DO was performed at 0.25 mm/12 h after an incubation period of 5 days. Distraction was continued for 10 days, resulting in a total of 5 mm of lengthening. After distraction, the solution was locally injected into the osteotomy site, once a day 1 ml for 1 week. One group received the solvent alone and served as the control, and the other three groups were treated with SDF-1, VEGF, and SDF-1with VEGF in an aqueous. Sequential X-ray radiographs were taken two weekly. The regeneration was monitored with the use of micro-CT analysis, mechanical testing, and histology. Radiographs showed accelerated regenerate ossification in the SDF-1, VEGF, and SDF-1 with the VEGF group, with a larger amount of new bone compared with the control group, especially SDF-1 with the VEGF group. Micro-CT analysis and biomechanical tests showed Continuous injection of the SDF-1, VEGF, and SDF-1 with VEGF during the consolidation period significantly increased bone mineral density bone volume, mechanical maximum loading, and bone mineralization of the regenerate. Similarly, the expression of osteogenic-specific genes, as determined by real-time polymerase chain reaction , was significantly higher in SDF-1 with the VEGF group than in the other groups. Histological examination revealed more new trabeculae in the distraction gap and more mature bone tissue for the SDF-1 with the VEGF group. SDF-1 and VEGF promote bone regeneration and mineralization during DO, and there is a synergistic effect between the SDF-1 and VEGF. It is possible to provide a new and feasible method to shorten the period of treatment of DO.

摘要

骨再生和矿化可通过牵张成骨(DO)来实现。在本研究中,我们调查了基质细胞衍生因子1(SDF - 1)和血管内皮生长因子(VEGF)对大鼠DO过程中新骨形成的影响。48只Sprague - Dawley大鼠被随机分为四组,每组12只。我们在大鼠中建立了左股骨DO模型,并进行了股骨中段截骨术,用外固定器固定。在5天的潜伏期后,以0.25毫米/12小时的速度进行DO。牵张持续10天,总共延长5毫米。牵张后,将溶液局部注入截骨部位,每天1次,每次1毫升,共1周。一组仅接受溶剂作为对照,其他三组分别用水溶液形式的SDF - 1、VEGF和SDF - 1与VEGF进行治疗。每两周拍摄一次连续的X线片。通过微计算机断层扫描分析、力学测试和组织学来监测再生情况。X线片显示,SDF - 1组、VEGF组以及SDF - 1与VEGF联合组的再生骨化加速,与对照组相比有更多的新骨形成,尤其是SDF - 1与VEGF联合组。微计算机断层扫描分析和生物力学测试表明,在巩固期持续注射SDF - 1、VEGF以及SDF - 1与VEGF能显著提高再生骨的骨密度、骨体积、力学最大负荷和骨矿化。同样,通过实时聚合酶链反应测定,SDF - 1与VEGF联合组中骨生成特异性基因的表达明显高于其他组。组织学检查显示,SDF - 1与VEGF联合组在牵张间隙中有更多的新小梁和更成熟的骨组织。SDF - 1和VEGF在DO过程中促进骨再生和矿化,且SDF - 1与VEGF之间存在协同作用。有可能提供一种新的可行方法来缩短DO的治疗周期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73da/11032098/d431b1596dc1/j_biol-2022-0851-fig001.jpg

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