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Manganese-enhanced magnetic resonance imaging for in vivo assessment of damage and functional improvement following spinal cord injury in mice.

机译:锰增强磁共振成像用于体内评估小鼠脊髓损伤后的损伤和功能改善。

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摘要

In past decades, much effort has been invested in developing therapies for spinal injuries. Lack of standardization of clinical read-out measures, however, makes direct comparison of experimental therapies difficult. Damage and therapeutic effects in vivo are routinely evaluated using rather subjective behavioral tests. Here we show that manganese-enhanced magnetic resonance imaging (MEMRI) can be used to examine the extent of damage following spinal cord injury (SCI) in mice in vivo. Injection of MnCl2 solution into the cerebrospinal fluid leads to manganese uptake into the spinal cord. Furthermore, after injury MEMRI-derived quantitative measures correlate closely with clinical locomotor scores. Improved locomotion due to treating the detrimental effects of SCI with an established therapy (neutralization of CD95Ligand) is reflected in an increase of manganese uptake into the injured spinal cord. Therefore, we demonstrate that MEMRI is a sensitive and objective tool for in vivo visualization and quantification of damage and functional improvement after SCI. Thus, MEMRI can serve as a reproducible surrogate measure of the clinical status of the spinal cord in mice, potentially becoming a standard approach for evaluating experimental therapies.
机译:在过去的几十年中,在开发用于脊柱损伤的疗法上投入了很多精力。然而,缺乏临床读出方法的标准化,使得难以直接比较实验疗法。通常使用相当主观的行为测试来评估体内的损伤和治疗效果。在这里,我们显示锰增强磁共振成像(MEMRI)可用于检查小鼠体内脊髓损伤(SCI)后的损伤程度。将MnCl2溶液注入脑脊髓液会导致锰吸收到脊髓中。此外,损伤后源自MEMRI的定量测量与临床运动评分密切相关。通过使用既定疗法(中和CD95Ligand)治疗SCI的有害作用,改善了运动能力,这反映在锰对受伤脊髓的摄取增加中。因此,我们证明MEMRI是SCI后体内可视化和损伤定量及功能改善定量的灵敏客观的工具。因此,MEMRI可以作为小鼠脊髓临床状态的可再现替代指标,有可能成为评估实验疗法的标准方法。

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