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Imaging horse tendons using multimodal 2-photon microscopy

机译:使用多峰2光子显微镜对马腱进行成像

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Injuries and damage to tendons plague both human and equine athletes. At the site of injuries, various cells congregate to repair and re-structure the collagen. Treatments for collagen injury range from simple procedures such as icing and pharmaceutical treatments to more complex surgeries and the implantation of stem cells. Regardless of the treatment, the level of mechanical stimulation incurred by the recovering tendon is crucial. However, for a given tendon injury, it is not known precisely how much of a load should be applied for an effective recovery. Both too much and too little loading of the tendon could be detrimental during recovery. A mapping of the complex local environment imparted to any cell present at the site of a tendon injury may however, convey fundamental insights related to their decision making as a function of applied load. Therefore, fundamentally knowing how cells translate mechanical cues from their external environment into signals regulating their functions during repair is crucial to more effectively treat these types of injuries. In this paper, we studied systems of tendons with a variety of 2-photon-based imaging techniques to examine the local mechanical environment of cells in both normal and injured tendons. These tendons were chemically treated to instigate various extents of injury and in some cases, were injected with stem cells. The results related by each imaging technique distinguish with high contrast and resolution multiple morphologies of the cells' nuclei and the alignment of the collagen during injury. The incorporation of 2-photon FLIM into this study probed new features in the local environment of the nuclei that were not apparent with steady-state imaging. Overall, this paper focuses on horse tendon injury pattern and analysis with different 2-photon confocal modalities useful for wide variety of application in damaged tissues.
机译:肌腱的损伤和损坏困扰着人类和马运动员。在受伤部位,各种细胞聚集在一起以修复和重组胶原蛋白。胶原蛋白损伤的治疗范围从简单的程序(例如结冰和药物治疗)到更复杂的手术和干细胞植入。无论采用何种治疗方法,恢复肌腱引起的机械刺激水平都是至关重要的。但是,对于给定的肌腱损伤,尚不确切知道为有效恢复应施加多少载荷。在恢复过程中,肌腱的负荷过大和过少都可能有害。然而,映射到存在于肌腱损伤部位的任何细胞的复杂局部环境的映射可能会传达出与它们的决策有关的基本见解,这些见解是所施加载荷的函数。因此,从根本上了解细胞如何在修复过程中将机械信号从其外部环境转化为调节其功能的信号,对于更有效地治疗这些类型的损伤至关重要。在本文中,我们使用各种基于2光子的成像技术研究了肌腱系统,以检查正常肌腱和受伤肌腱中细胞的局部机械环境。对这些腱进行化学处理以引起不同程度的损伤,并在某些情况下向它们注射干细胞。每种成像技术相关的结果均以高对比度和分辨率区分出细胞核的多种形态以及损伤过程中胶原蛋白的排列。将2-光子FLIM纳入本研究探索了原子核局部环境中稳态成像无法发现的新特征。总体而言,本文着重于马腱损伤模式和具有不同2光子共聚焦方式的分析,可广泛用于受损组织中。

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