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糖尿病相关运动系统功能障碍。

Diabetes Mellitus-Related Dysfunction of the Motor System.

机构信息

Department of Physical Therapy, Kyorin University, 5-4-1 Shimorenjaku, Mitaka, Tokyo 181-8612, Japan.

出版信息

Int J Mol Sci. 2020 Oct 11;21(20):7485. doi: 10.3390/ijms21207485.

Abstract

Although motor deficits in humans with diabetic neuropathy have been extensively researched, its effect on the motor system is thought to be lesser than that on the sensory system. Therefore, motor deficits are considered to be only due to sensory and muscle impairment. However, recent clinical and experimental studies have revealed that the brain and spinal cord, which are involved in the motor control of voluntary movement, are also affected by diabetes. This review focuses on the most important systems for voluntary motor control, mainly the cortico-muscular pathways, such as corticospinal tract and spinal motor neuron abnormalities. Specifically, axonal damage characterized by the proximodistal phenotype occurs in the corticospinal tract and motor neurons with long axons, and the transmission of motor commands from the brain to the muscles is impaired. These findings provide a new perspective to explain motor deficits in humans with diabetes. Finally, pharmacological and non-pharmacological treatment strategies for these disorders are presented.

摘要

尽管糖尿病性周围神经病患者的运动缺陷已得到广泛研究,但据认为其对运动系统的影响小于对感觉系统的影响。因此,运动缺陷被认为仅归因于感觉和肌肉损伤。然而,最近的临床和实验研究表明,大脑和脊髓(参与随意运动的运动控制)也受到糖尿病的影响。本综述主要关注对随意运动控制最重要的系统,如皮质-肌肉通路,如皮质脊髓束和脊髓运动神经元异常。具体而言,长轴突的皮质脊髓束和运动神经元中存在以近-远表型为特征的轴突损伤,从而损害了大脑向肌肉传递运动指令。这些发现为解释糖尿病患者的运动缺陷提供了新的视角。最后,提出了针对这些疾病的药理学和非药理学治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7ac/7589125/01917f6a4eb9/ijms-21-07485-g003.jpg

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