...
首页> 外文期刊>Journal of Orthopaedic Translation >Early degeneration of the meniscus revealed by microbiomechanical alteration in a rabbit anterior cruciate ligament transection model
【24h】

Early degeneration of the meniscus revealed by microbiomechanical alteration in a rabbit anterior cruciate ligament transection model

机译:兔子前十字韧带横向转化模型的微生物机械改变透露的弯月面的早期退化

获取原文
   

获取外文期刊封面封底 >>

       

摘要

BackgroundThe microbiomechanical properties of the meniscus influence the cell response to the surrounding biomechanical environment??and are beneficial to understand meniscus repairing and healing. To date, however, this information remains ambiguous. This study aims to characterise the microbiomechanical properties of the meniscus after degeneration in a rabbit anterior cruciate ligament transection (ACLT) model and to analyse the corresponding histology at the macroscale and chemical composition.MethodsTwenty New Zealand white rabbits were used. Menisci were collected from the knee joints 4 and 8 weeks after the ACLT and from those of the corresponding control groups. The central portions of both medial and lateral menisci were investigated using atomic force microscopy, histological study, and an energy-dispersive spectrometer. The evaluation was conducted regionally within the inner, middle, and outer sites from the top layer (facing the femoral surface) to the bottom layer (facing the tibial surface) in both the lateral and medial menisci to obtain the site-dependent properties.ResultsAt 4 weeks after surgery, the dynamic elastic modulus at the microlevel increased significantly at both the top and bottom layers compared with the intact meniscus (P??=??0.021). At 8 weeks after surgery, the stiffening occurred in all regions (P??=??0.030). The medial meniscus showed greater change than the lateral meniscus. All these microbiomechanical alterations occurred before the histological findings at the macroscale.ConclusionThe microbiomechanical properties in the meniscus changed significantly after ACLT and were site dependent. Their alterations occurred before the histological changes of degeneration were observed.The Translational Potential of this ArticleThe results of our study indicated that degeneration promoted meniscus stiffening. Thus, they provide a better understanding of the disease process affecting the meniscus. Our results might be beneficial to understand how mechanical forces distribute throughout the healthy and pathologic joint. They indicate the possibility of early diagnosis using a minimally invasive arthroscopic tool, as well as they might guide treatment to the healthy and pathologic meniscus and joint.
机译:背景技术弯月面的微生物力学性能影响细胞对周围生物力学环境的反应?是有益于理解弯月球修复和愈合。然而,迄今为止,此信息仍然存在含糊不清。本研究旨在表征兔子前十字韧带转育(ACLT)模型中变性后弯月面的微生物力学性质,并分析Macroscale和化学成分的相应组织学..使用了新西兰白兔。在ACLT后4和8周的膝关节和相应对照组的那些。使用原子力显微镜,组织学研究和能量分散光谱仪研究了内侧和横向半月茎的中心部分。在横向和内侧半月板中,从顶层(面对股骨表面)到底层(面对胫骨表面),从顶层(面对胫骨表面)区域地进行评价,以获得基本依赖的属性.Resultsat手术后4周,与完整弯月面相比,微螺旋的动态弹性模量在顶层和底层两层上显着增加(P ?? = 0.021)。手术后8周,所有地区发生加强(p ?? = 0.030)。内侧半月板表现出比横向半月板更大的变化。所有这些微生物机械改变发生在Macroscale的组织学发现之前。结论肌肌中的微生物机械性能显着改变,并且依赖于位点。在观察到退化的组织学变化之前,它们的改变发生了。我们研究的这种艺术结果的翻译潜力表明,退化促进了弯月球加强。因此,它们可以更好地了解影响弯月面的疾病过程。我们的结果可能有利于了解机械力量如何在整个健康和病理关节中分布。它们表明使用微创关节镜工具的早期诊断的可能性,以及它们可能指导治疗健康和病理弯月面和关节。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号