Pallidothalamic Circuit-Selective Manipulation Ameliorates Motor Symptoms in a Rat Model of Parkinsonian.

IF 4.4 2区 医学 Q1 NEUROSCIENCES
Jacob Jackson, Hannah Loughlin, Chloe Looman, Chunxiu Yu
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Abstract

Deep brain stimulation (DBS) effectively treats motor symptoms of advanced Parkinson's disease (PD), with the globus pallidus interna (GPi) commonly targeted. However, its therapeutic mechanisms remain unclear. We employed optogenetic stimulation in the entopeduncular nucleus (EP), the rat homolog of GPi, in a unilateral 6-hydroxydopamine lesioned female Sprague Dawley rat model of PD. We quantified behavioral effects of optogenetic EP DBS on motor symptoms and conducted single-unit recordings in EP and ventral lateral motor thalamus (VL) to examine changes in neural activity. High-frequency optogenetic EP DBS (75, 100, 130 Hz) reduced ipsilateral turning and corrected forelimb stepping, while low-frequency stimulation (5 and 20 Hz) had no effect. EP and VL neurons exhibited mixed response during stimulation, with both increased and decreased firing. The average firing rate of all recorded neurons in the EP and VL significantly increased at 130 Hz but not at other frequencies. Beta-band oscillatory activity was reduced in most EP neurons across high frequencies (75, 100, 130 Hz), while reductions in beta-band oscillations in VL occurred only at 130 Hz. These findings suggest that the neural firing rates within EP and VL circuits were differentially modulated by EP DBS; they may not fully explain the frequency-dependent behavioral effect. Instead, high-frequency optogenetic EP DBS at 130 Hz may ameliorate parkinsonian motor symptoms by reducing abnormal oscillatory activity in the EP-VL circuits. This study underscores the therapeutic potential of circuit-specific modulation in the pallidothalamic pathway using optogenetic EP DBS to alleviate motor deficits in a PD rat model.

白脑丘脑回路选择性操作改善帕金森大鼠模型的运动症状。
深部脑刺激(DBS)可以有效治疗晚期帕金森病(PD)的运动症状,通常以内苍白球(GPi)为靶点。然而,其治疗机制尚不清楚。我们在单侧6-OHDA损伤的雌性spague Dawley大鼠PD模型中,对GPi的大鼠同源物epp进行光遗传刺激。我们量化了光遗传EP DBS对运动症状的行为影响,并在EP和腹侧运动丘脑(VL)进行了单单位记录,以检查神经活动的变化。行为学测试显示,高频光诱发电位DBS(75、100、130Hz)可减少同侧转身和矫正前肢踏步,而低频(5、20Hz)无效果。EP和VL神经元在刺激过程中表现出混合反应,放电增加和减少。值得注意的是,在130 Hz时,所有记录到的EP和VL神经元的平均放电率显著增加,而在其他频率下则没有。虽然在高频率(75、100、130 Hz)下,大多数EP神经元的β带振荡活动减少,但只有在130 Hz时,VL的β带振荡才会减少。这些发现表明,EP DBS对EP和VL回路内的神经放电频率有不同的调节,但可能不能完全解释频率依赖性的行为效应。相反,130Hz的高频光遗传学EP DBS可能通过减少EP- vl回路的异常振荡活动来改善帕金森运动症状。这项研究强调了利用光遗传EP DBS来缓解PD大鼠模型的运动缺陷,在pallidothalamic通路中的电路特异性调节的治疗潜力。EP局部细胞对EP DBS治疗PD的作用尚不清楚。我们的研究通过使用局部细胞特异性光遗传刺激来解决这个问题。光遗传学直接刺激EP局部神经元可有效减轻6-OHDA损伤大鼠的帕金森症状。这些发现强调了通过光遗传学技术在丘脑皮层通路中精确控制电路的重要性,为改善帕金森病的运动缺陷提供了一种有希望的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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