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游泳和负载 L-精氨酸的壳聚糖纳米粒子可改善大鼠脊髓中与衰老相关的神经元萎缩、自噬标志物 LC3、GABA 和 BDNF-TrkB 通路。

Swimming and L-arginine loaded chitosan nanoparticles ameliorates aging-induced neuron atrophy, autophagy marker LC3, GABA and BDNF-TrkB pathway in the spinal cord of rats.

机构信息

Department of Exercise Physiology, Karaj Branch, Islamic Azad University, Karaj, Iran.

Exercise and Rehabilitation Sciences Laboratory, School of Physical Therapy, Faculty of Rehabilitation Sciences, Universidad Andres Bello, 7591538, Santiago, Chile.

出版信息

Pflugers Arch. 2023 May;475(5):621-635. doi: 10.1007/s00424-023-02795-y. Epub 2023 Mar 4.

Abstract

Aging is associated with muscle atrophy, and erosion and destruction of neuronal pathways in the spinal cord. The study aim was to assess the effect of swimming training (Sw) and L-arginine loaded chitosan nanoparticles (LA-CNPs) on the sensory and motor neuron population, autophagy marker LC3, total oxidant status/total antioxidant capacity, behavioural test, GABA and BDNF-TrkB pathway in the spinal cord of aging rats. The rats were randomized to five groups: young (8-weeks) control (n = 7), old control (n = 7), old Sw (n = 7), old LA-CNPs (n = 7) and old Sw + LA-CNPs (n = 7). Groups under LA-CNPs supplementation received 500 mg/kg/day. Sw groups performed a swimming exercise programme 5 days per week for 6 weeks. Upon the completion of the interventions the rats were euthanized and the spinal cord was fixed and frozen for histological assessment, IHC, and gene expression analysis. The old group had more atrophy in the spinal cord with higher changes in LC3 as an indicator of autophagy in the spinal cord compared to the young group (p < 0.0001). The old Sw + LA-CNPs group increased (improved) spinal cord GABA (p = 0.0187), BDNF (p = 0.0003), TrkB (p < 0.0001) gene expression, decreased autophagy marker LC3 protein (p < 0.0001), nerve atrophy and jumping/licking latency (p < 0.0001), improved sciatic functional index score and total oxidant status/total antioxidant capacity compared to the old group (p < 0.0001). In conclusion, swimming and LA-CNPs seems to ameliorate aging-induced neuron atrophy, autophagy marker LC3, oxidant-antioxidant status, functional restoration, GABA and BDNF-TrkB pathway in the spinal cord of aging rats. Our study provides experimental evidence for a possible positive role of swimming and L-arginine loaded chitosan nanoparticles to decrease complications of aging.

摘要

衰老是与肌肉萎缩以及脊髓神经元通路的侵蚀和破坏相关的。本研究旨在评估游泳训练(Sw)和负载 L-精氨酸的壳聚糖纳米粒子(LA-CNPs)对衰老大鼠脊髓感觉和运动神经元群体、自噬标志物 LC3、总氧化状态/总抗氧化能力、行为测试、GABA 和 BDNF-TrkB 通路的影响。大鼠随机分为五组:年轻(8 周)对照组(n = 7)、老年对照组(n = 7)、老年游泳组(n = 7)、老年 LA-CNPs 组(n = 7)和老年游泳+LA-CNPs 组(n = 7)。LA-CNPs 补充组给予 500mg/kg/天。游泳组每周进行 5 天的游泳运动方案,共 6 周。干预完成后,处死大鼠,固定并冷冻脊髓进行组织学评估、免疫组织化学和基因表达分析。与年轻组相比,老年组脊髓萎缩更严重,脊髓中 LC3 的变化更大,作为自噬的指标(p < 0.0001)。老年游泳+LA-CNPs 组增加(改善)了脊髓 GABA(p = 0.0187)、BDNF(p = 0.0003)、TrkB(p < 0.0001)基因表达,减少了自噬标志物 LC3 蛋白(p < 0.0001),神经萎缩和跳跃/舔舐潜伏期(p < 0.0001),改善了坐骨神经功能指数评分和总氧化状态/总抗氧化能力,与老年组相比(p < 0.0001)。总之,游泳和 LA-CNPs 似乎改善了衰老引起的神经元萎缩、自噬标志物 LC3、氧化还原状态、功能恢复、脊髓中的 GABA 和 BDNF-TrkB 通路。我们的研究为游泳和负载 L-精氨酸的壳聚糖纳米粒子可能发挥积极作用以减少衰老并发症提供了实验证据。

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