靶向GD3合成酶的基因治疗可预防mptp诱导的帕金森病和执行功能障碍

IF 2.5 4区 医学 Q3 NEUROSCIENCES European Journal of Neuroscience Pub Date : 2025-03-16 DOI:10.1111/ejn.70061
Panchanan Maiti, Yi Xue, Tonia S. Rex, Michael P. McDonald
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引用次数: 0

摘要

超过一半的帕金森患者表现出额纹状体介导的执行功能障碍,包括持续注意力、判断力和冲动控制方面的缺陷。我们之前已经证明,通过靶向删除GD3合成酶(GD3S)来修饰脑神经节苷类在体内和体外都具有神经保护作用。本研究的目的是确定GD3S敲除是否会保护神经元并防止亚慢性治疗后1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)的执行功能障碍。对C57BL/6N野生型小鼠进行了一系列感觉运动任务和反应时间任务的评估,其中包括持续注意力和冲动控制的测量。持续注意以反应准确性和反应时间衡量;冲动性是通过在反应孔或食物井中提前反应来衡量的。在达到稳定表现后,小鼠接受了一种重组腺相关病毒(AAV)载体的腔内注射,该载体表达一种短发夹RNA (shRNA)结构,靶向编码GD3S的基因St8sia1,或一种混乱序列控制(scrRNA)。4周后,小鼠接受MPTP或生理盐水注射。与其他三组相比,scrRNA对照组的MPTP损伤小鼠在MPTP注射后表现出冲动控制的丧失。这些缺陷随着训练时间的延长而减少,但在较短的提示持续时间或较长的提示持续时间的挑战训练中再次出现。GD3S敲低可部分保护黑质纹状体神经元免受MPTP神经毒性的影响,并防止运动障碍(协调、运动迟缓、精细运动技能)和冲动控制丧失。我们的数据表明,抑制GD3S作为帕金森病的一种新的治疗策略值得进一步研究。
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Gene Therapy Targeting GD3 Synthase Protects Against MPTP-Induced Parkinsonism and Executive Dysfunction

More than half of Parkinson's patients exhibit fronto-striatally mediated executive dysfunction, including deficits in sustained attention, judgment, and impulse control. We have previously shown that modification of brain gangliosides by targeted deletion of GD3 synthase (GD3S) is neuroprotective in vivo and in vitro. The objective of the present study was to determine whether GD3S knockdown will protect neurons and prevent executive dysfunction following a subchronic regimen of 25-mg/kg 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP). C57BL/6N wild-type mice were assessed on a battery of sensorimotor tasks and a reaction-time task that included measures of sustained attention and impulse control. Sustained attention was measured by response accuracy and reaction time; impulsivity was measured by premature responding in the response holes or the food well during the precue period. After reaching stable performance, mice received intrastriatal injections of a recombinant adeno-associated viral (AAV) vector expressing a short-hairpin RNA (shRNA) construct targeting St8sia1, the gene that codes for GD3S, or a scrambled-sequence control (scrRNA). After 4 weeks, mice received MPTP or saline injections. MPTP-lesioned mice in the scrRNA control group exhibited loss of impulse control in the sessions following MPTP injections, compared to the other three groups. These deficits abated with extended training but re-emerged on challenge sessions with shorter cue durations or longer precue durations. GD3S knockdown partially protected nigrostriatal neurons from MPTP neurotoxicity and prevented the motor impairments (coordination, bradykinesia, fine motor skills) and loss of impulse control. Our data suggest that inhibition of GD3S warrants further investigation as a novel therapeutic strategy for Parkinson's disease.

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来源期刊
European Journal of Neuroscience
European Journal of Neuroscience 医学-神经科学
CiteScore
7.10
自引率
5.90%
发文量
305
审稿时长
3.5 months
期刊介绍: EJN is the journal of FENS and supports the international neuroscientific community by publishing original high quality research articles and reviews in all fields of neuroscience. In addition, to engage with issues that are of interest to the science community, we also publish Editorials, Meetings Reports and Neuro-Opinions on topics that are of current interest in the fields of neuroscience research and training in science. We have recently established a series of ‘Profiles of Women in Neuroscience’. Our goal is to provide a vehicle for publications that further the understanding of the structure and function of the nervous system in both health and disease and to provide a vehicle to engage the neuroscience community. As the official journal of FENS, profits from the journal are re-invested in the neuroscientific community through the activities of FENS.
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