Hwang Sun Hee, Chang Eun Hyuk, Kwak Geon, Jeon Hyeonjin, Choi Byung-Ok, Hong Young Bin
Department of Neurology, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea.
Samsung Biomedical Research Institute, Samsung Advanced Institute of Technology, Samsung Electronics Co., Ltd., Seoul, Republic of Korea.
Anim Cells Syst (Seoul). 2021 Feb 11;25(1):11-18. doi: 10.1080/19768354.2021.1880967.
Charcot-Marie-Tooth disease (CMT), a genetically heterogeneous group of diseases in the peripheral nervous system, is characterized by progressive and symmetrical distal weakness resulting in gait abnormality. The necessity of the diagnostic and prognostic biomarkers has been raised for both basic research and clinical practice in CMT. Since biomarkers for animal study of CMT are limited, we evaluated the feasibility of gait parameters as tool for measuring disease phenotype of CMT mouse model. Using a Trembler-J (Tr-J) mouse, a CMT type 1 (CMT1) mouse model, we analyzed kinematic parameters such as angles of hip, knee and ankle (sagittal plane), and spatial parameters including step width and stride length (transverse plane). Regarding of kinematic parameters, Tr-J mice exhibited less plantarflexed ankle during the swing phase and more dorsiflexed ankle at the terminal stance compared to control mice. The range of motion in ankle angle of Tr-J mice was significantly greater than that of control mice. In spatial parameter, Tr-J mice exhibited wider step width compared to control mice. These results are similar to previously reported gait patterns of CMT1 patients. In comparison with other markers such as nerve conduction study and rotarod test, gait parameters dynamically reflected the disease progression of CMT1 mice. Therefore, these data imply that gait parameters can be used as useful tools to analyzed the disease phenotype and progression during preclinical study of peripheral neuropathy such as CMT.
夏科-马里-图斯病(CMT)是一组遗传性周围神经系统疾病,其特征是进行性和对称性的远端肌无力,导致步态异常。在CMT的基础研究和临床实践中,诊断和预后生物标志物的必要性已被提出。由于用于CMT动物研究的生物标志物有限,我们评估了步态参数作为测量CMT小鼠模型疾病表型工具的可行性。使用震颤-J(Tr-J)小鼠,一种CMT1型(CMT1)小鼠模型,我们分析了运动学参数,如髋、膝和踝关节角度(矢状面),以及空间参数,包括步宽和步幅(横断面)。关于运动学参数,与对照小鼠相比,Tr-J小鼠在摆动期踝关节跖屈较少,在终末站立期踝关节背屈较多。Tr-J小鼠踝关节角度的运动范围明显大于对照小鼠。在空间参数方面,与对照小鼠相比,Tr-J小鼠的步宽更宽。这些结果与先前报道的CMT1患者的步态模式相似。与其他标志物如神经传导研究和转棒试验相比,步态参数动态反映了CMT1小鼠的疾病进展。因此,这些数据表明,步态参数可作为有用的工具,用于分析诸如CMT等周围神经病变临床前研究期间的疾病表型和进展。