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电针通过CREB/BDNF/TrkB通路改善单眼剥夺幼鼠V1皮层的突触可塑性。

Electroacupuncture improves V1 cortex synaptic plasticity via the CREB/BDNF/TrkB pathway in juvenile rats with monocular deprivation.

作者信息

Wang Lin, Ji Yangbin, Mei Haibo, Gong Xin, Miao Huachun, Zhu Zaiman, Ding Jian

机构信息

School of Basic Medical, Wannan Medical College, Wuhu, Anhui, 241002, China; Laboratory of Aging and Regeneration, Wannan Medical College, Wuhu, Anhui, 241002, China; Anhui Province Key Laboratory of Basic Research and Transformation of Age-related Diseases, Wannan Medical College, Wuhu, Anhui, 241002, China.

School of Anesthesiology, Wannan Medical College, Wuhu, Anhui, 241002, China.

出版信息

Exp Eye Res. 2025 Jan;250:110169. doi: 10.1016/j.exer.2024.110169. Epub 2024 Nov 21.

Abstract

The present study aims to investigate the impact of the CREB/BDNF/TrkB signaling pathway on synaptic plasticity in the visual cortex of juvenile amblyopic rats that have undergone monocular deprivation (MD). This study involved sixty 2-week-old Sprague-Dawley (SD) juvenile rats, which were not specified by gender. In the first part of the study, 24 rats were randomized into control and MD groups; In the second part, 36 rats were randomized into MD, electroacupuncture (EA) and EA + CREB antagonist (666-15) groups. The MD model was established using the monocular suture method. 14 d after monocular suture, EA treatment was started for 30 min daily, at a frequency of 2-10 Hz and an intensity of 1 mA, for 2 weeks. According to the results from part 1, the P100 wave latency in the MD group was prolonged, and its amplitude was lower compared to the control group. Additionally, the neuron number in the V1 cortex of the MD group decreased, along with reduced expression levels of CREB, BDNF, p-TrkB, and the key plasticity proteins PSD95 and SYN. In part 2, EA treatment significantly increased the electrophysiological activity of neurons in V1 cortex, shortened the latency of P100 peaks to varying degrees, increased the amplitude significantly, and restored the morphology and structure of neurons to normal levels; The expression of synaptic proteins PSD95 and SYN, as well as the expression of signaling molecules CREB, BDNF, and p-TrkB proteins were increased. However, the effects of EA were reversed when the specific CREB inhibitor 666-16 was administered. These data indicate that EA enhances the expression of V1 cortical synaptic plasticity-related proteins by regulating the expression of CREB/BDNF/TrkB signaling pathway, thereby enhancing V1 neural synaptic plasticity and reversing the effects of MD on visual acuity.

摘要

本研究旨在探讨CREB/BDNF/TrkB信号通路对单眼剥夺(MD)的幼年弱视大鼠视觉皮层突触可塑性的影响。本研究涉及60只2周龄的Sprague-Dawley(SD)幼年大鼠,未按性别区分。在研究的第一部分,将24只大鼠随机分为对照组和MD组;在第二部分,将36只大鼠随机分为MD组、电针(EA)组和EA + CREB拮抗剂(666-15)组。采用单眼缝合方法建立MD模型。单眼缝合14天后,开始每天进行30分钟的EA治疗,频率为2-10Hz,强度为1mA,持续2周。根据第一部分的结果,MD组的P100波潜伏期延长,与对照组相比其振幅较低。此外,MD组V1皮层中的神经元数量减少,同时CREB、BDNF、p-TrkB以及关键可塑性蛋白PSD95和SYN的表达水平降低。在第二部分中,EA治疗显著增加了V1皮层中神经元的电生理活性,不同程度地缩短了P100波峰的潜伏期,显著增加了振幅,并使神经元的形态和结构恢复到正常水平;突触蛋白PSD95和SYN的表达以及信号分子CREB、BDNF和p-TrkB蛋白的表达均增加。然而,当给予特异性CREB抑制剂666-16时,EA的作用被逆转。这些数据表明,EA通过调节CREB/BDNF/TrkB信号通路的表达来增强V1皮层突触可塑性相关蛋白的表达,从而增强V1神经突触可塑性并逆转MD对视力的影响。

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