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2 型糖尿病小鼠晚期感觉和运动功能障碍及形态改变的特征。

Characterization of sensory and motor dysfunction and morphological alterations in late stages of type 2 diabetic mice.

机构信息

School of Rehabilitation Sciences and Engineering, University of Health and Rehabilitation Sciences, Qingdao, China.

Ministry of Education Key Laboratory of Protein Science, Beijing Advanced Innovation Center for Structural Biology, Beijing Frontier Research Center for Biological Structure, School of Life Sciences, Tsinghua University, Beijing, China.

出版信息

Front Endocrinol (Lausanne). 2024 Mar 11;15:1374689. doi: 10.3389/fendo.2024.1374689. eCollection 2024.

Abstract

Diabetic neuropathy is the most common complication of diabetes and lacks effective treatments. Although sensory dysfunction during the early stages of diabetes has been extensively studied in various animal models, the functional and morphological alterations in sensory and motor systems during late stages of diabetes remain largely unexplored. In the current work, we examined the influence of diabetes on sensory and motor function as well as morphological changes in late stages of diabetes. The obese diabetic Lepr mice (db/db) were used for behavioral assessments and subsequent morphological examinations. The db/db mice exhibited severe sensory and motor behavioral defects at the age of 32 weeks, including significantly higher mechanical withdrawal threshold and thermal latency of hindpaws compared with age-matched nondiabetic control animals. The impaired response to noxious stimuli was mainly associated with the remarkable loss of epidermal sensory fibers, particularly CGRP-positive nociceptive fibers. Unexpectedly, the area of CGRP-positive terminals in the spinal dorsal horn was dramatically increased in diabetic mice, which was presumably associated with microglial activation. In addition, the db/db mice showed significantly more foot slips and took longer time during the beam-walking examination compared with controls. Meanwhile, the running duration in the rotarod test was markedly reduced in db/db mice. The observed sensorimotor deficits and motor dysfunction were largely attributed to abnormal sensory feedback and muscle atrophy as well as attenuated neuromuscular transmission in aged diabetic mice. Morphological analysis of neuromuscular junctions (NMJs) demonstrated partial denervation of NMJs and obvious fragmentation of acetylcholine receptors (AChRs). Intrafusal muscle atrophy and abnormal muscle spindle innervation were also detected in db/db mice. Additionally, the number of VGLUT1-positive excitatory boutons on motor neurons was profoundly increased in aged diabetic mice as compared to controls. Nevertheless, inhibitory synaptic inputs onto motor neurons were similar between the two groups. This excitation-inhibition imbalance in synaptic transmission might be implicated in the disturbed locomotion. Collectively, these results suggest that severe sensory and motor deficits are present in late stages of diabetes. This study contributes to our understanding of mechanisms underlying neurological dysfunction during diabetes progression and helps to identify novel therapeutic interventions for patients with diabetic neuropathy.

摘要

糖尿病性神经病变是糖尿病最常见的并发症,目前缺乏有效的治疗方法。尽管在各种动物模型中已经广泛研究了糖尿病早期的感觉功能障碍,但糖尿病晚期感觉和运动系统的功能和形态改变在很大程度上仍未得到探索。在本研究中,我们研究了糖尿病对晚期糖尿病感觉和运动功能以及形态变化的影响。肥胖型糖尿病 Lepr 小鼠(db/db)用于行为评估和随后的形态学检查。db/db 小鼠在 32 周龄时表现出严重的感觉和运动行为缺陷,与年龄匹配的非糖尿病对照动物相比,后爪的机械退缩阈值和热潜伏期显著升高。对有害刺激的反应受损主要与表皮感觉纤维,特别是 CGRP 阳性伤害性纤维的显著丧失有关。出乎意料的是,糖尿病小鼠脊髓背角的 CGRP 阳性终末区域显著增加,这可能与小胶质细胞激活有关。此外,db/db 小鼠在走棒试验中明显出现更多的足滑现象,且用时更长。同时,db/db 小鼠在转棒试验中的跑动时间明显缩短。观察到的感觉运动缺陷和运动功能障碍主要归因于老年糖尿病小鼠异常的感觉反馈、肌肉萎缩以及神经肌肉传递减弱。运动终板的形态学分析显示运动终板发生部分去神经支配,乙酰胆碱受体(AChR)明显碎片化。db/db 小鼠的梭内肌萎缩和肌梭异常神经支配也被检测到。此外,与对照组相比,老年糖尿病小鼠运动神经元上的 VGLUT1 阳性兴奋性终末数量显著增加。然而,两组之间运动神经元上的抑制性突触输入相似。这种突触传递中的兴奋-抑制失衡可能与运动障碍有关。总之,这些结果表明糖尿病晚期存在严重的感觉和运动缺陷。本研究有助于我们了解糖尿病进展过程中神经功能障碍的机制,并有助于为糖尿病性神经病患者确定新的治疗干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6914/10964478/98dafd76b877/fendo-15-1374689-g001.jpg

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