贝伐单抗关节内注射预防4型Salter-Harris模型大鼠Physeal Bar形成的初步研究

Z. Imani, N. Milan, Hossein Nematian, L. Aghaghazvini, M. Sedaghat, Mohammad Bagher Ahadpour Sefidan, A. Mirbagheri, M. Nabian
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引用次数: 0

摘要

背景:本研究旨在为生长板骨折并发症的预防性治疗提供一种新方法。在本研究中,我们研究了在4型Salter-Harris损伤模型中,关节内注射抗血管内皮生长因子(抗VEGF)抗体贝伐单抗对关节软骨修复过程的影响。方法:用1.8mm钻头在14只大鼠胫骨近端生长板上造成Salter-Harris损伤。将大鼠随机分为两组:LD组,给予高剂量贝伐单抗关节内注射(250μg),HD组,损伤后给予低剂量贝伐珠单抗关节内注射液(50μg)。术后2个月处死大鼠,对其胫骨进行显微计算机断层扫描(CT)分析、组织学评估和胫骨长度测量。结果:高剂量组71%的样本和低剂量组100%的样本中观察到骨条形成。在高剂量组中观察到物理软骨厚度的相对增加(P=0.007)和骨条形成的减少(P=0.029)。两组胫骨长度无显著差异(P=0.150)。结论:关节内给予贝伐单抗具有积极的恢复作用。我们建议采用这种治疗方法,因为它有可能改善软骨修复,并有能力作为骨软骨缺损的主要或邻近治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Intra-Articular Injection of Bevacizumab on the Prevention of Physeal Bar Formation in Type 4 Salter Harris Model in Rats: A Pilot Study
Background: This study was designed to achieve a new method as a preventive treatment for complications of growth plate fractures. In this study, we investigate the effect of intra-articular injection of anti-vascular endothelial growth factor (anti-VEGF) antibody bevacizumab on the repair process of articular cartilage in a type 4 Salter Harris injury model. Methods: A Salter Harris injury was created on the proximal tibial growth plate of 14 rats by a 1.8 mm drill. The rats were randomly classified into two groups: group LD, administration of high-dose intra-articular injection of bevacizumab (250 μg), and group HD, administration of low-dose intra-articular injection of bevacizumab (50 μg) after injury. The rats were killed 2 months postoperatively and their tibia underwent micro-computed tomography (CT) analysis, histological assessment, and measurement of tibial bone length. Results: Bony bar formation was observed in 71% of the samples in the high-dose group and in 100% of the low-dose group. Relative increase in physeal cartilage thickness (P = 0.007) and decrease in bony bar formation (P = 0.029) were observed significantly in the high dose group. There was no significant difference in tibia length between the two groups (P = 0.150). Conclusion: Intra-articular administration of bevacizumab demonstrated positive restorative effects. We suggest this method of treatment due to its potential of improving cartilage repair and capability to be used as a main or adjacent treatment in osteochondral defects.
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