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电场刺激可引导视神经挤压伤后靶特异性轴突再生及部分视力恢复。

Electric field stimulation directs target-specific axon regeneration and partial restoration of vision after optic nerve crush injury.

作者信息

Kim Timothy, Iseri Ege, Peng Micalla G, Medvidovic Sasha, Silliman Timothy, Pahlavan Pooyan, Niu Gengle, Huang Connie, Simonyan Anahit, Pahnahad Javad, Yao Petcy, Lam Phillip, Garimella Vahini, Shahidi Mahnaz, Bienkowski Michael S, Lee Darrin J, Thomas Biju, Lazzi Gianluca, Gokoffski Kimberly K

机构信息

Department of Ophthalmology, Keck School of Medicine, USC Roski Eye Institute, University of Southern California, Los Angeles, California, United States of America.

Department of Biomedical Engineering, Viterbi School of Engineering, University of Southern California, Los Angeles, California, United States of America.

出版信息

PLoS One. 2025 Jan 9;20(1):e0315562. doi: 10.1371/journal.pone.0315562. eCollection 2025.

Abstract

Failure of central nervous system (CNS) axons to regenerate after injury results in permanent disability. Several molecular neuro-protective and neuro-regenerative strategies have been proposed as potential treatments but do not provide the directional cues needed to direct target-specific axon regeneration. Here, we demonstrate that applying an external guidance cue in the form of electric field stimulation to adult rats after optic nerve crush injury was effective at directing long-distance, target-specific retinal ganglion cell (RGC) axon regeneration to native targets in the diencephalon. Stimulation was performed with asymmetric charged-balanced (ACB) waveforms that are safer than direct current and more effective than traditional, symmetric biphasic waveforms. In addition to partial anatomical restoration, ACB waveforms conferred partial restoration of visual function as measured by pattern electroretinogram recordings and local field potential recordings in the superior colliculus-and did so without the need for genetic manipulation. Our work suggests that exogenous electric field application can override cell-intrinsic and cell-extrinsic barriers to axon regeneration, and that electrical stimulation performed with specific ACB waveforms may be an effective strategy for directing anatomical and functional restoration after CNS injury.

摘要

中枢神经系统(CNS)轴突损伤后无法再生会导致永久性残疾。已经提出了几种分子神经保护和神经再生策略作为潜在的治疗方法,但这些方法并未提供引导靶标特异性轴突再生所需的定向线索。在此,我们证明,在成年大鼠视神经挤压伤后,以电场刺激的形式施加外部引导线索,可有效地引导长距离、靶标特异性的视网膜神经节细胞(RGC)轴突再生至间脑的天然靶标。刺激采用不对称电荷平衡(ACB)波形进行,这种波形比直流电更安全,且比传统的对称双相波形更有效。除了部分解剖结构恢复外,通过模式视网膜电图记录和上丘局部场电位记录测量,ACB波形还使视觉功能得到部分恢复,而且无需进行基因操作。我们的研究表明,施加外源电场可以克服轴突再生的细胞内在和细胞外在障碍,并且采用特定ACB波形进行电刺激可能是指导中枢神经系统损伤后解剖和功能恢复的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fec/11717274/3b968065012b/pone.0315562.g001.jpg

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