Postmortem Fatty Acid Abnormalities in the Cerebellum of Patients with Essential Tremor.

IF 2.7 3区 医学 Q3 NEUROSCIENCES Cerebellum Pub Date : 2024-12-01 Epub Date: 2024-08-31 DOI:10.1007/s12311-024-01736-4
Mélissa Simard, Koralie Mélançon, Line Berthiaume, Cyntia Tremblay, Laura Pshevorskiy, Pierre Julien, Ali H Rajput, Alex Rajput, Frédéric Calon
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Abstract

Fatty acids play many critical roles in brain function but have not been investigated in essential tremor (ET), a frequent movement disorder suspected to involve cerebellar dysfunction. Here, we report a postmortem comparative analysis of fatty acid profiles by gas chromatography in the cerebellar cortex from ET patients (n = 15), Parkinson's disease (PD) patients (n = 15) and Controls (n = 17). Phosphatidylcholine (PC), phosphatidylethanolamine (PE) and phosphatidylinositol (PI)/ phosphatidylserine (PS) were separated by thin-layer chromatography and analyzed separately. First, the total amounts of fatty acids retrieved from the cerebellar cortex were lower in ET patients compared with PD patients, including monounsaturated (MUFA) and polyunsaturated fatty acids (PUFA). The diagnosis of ET was associated with lower cerebellar levels of saturated fatty acids (SFA) and PUFA (DHA and ARA) in the PE fraction specifically, but with a higher relative content of dihomo-γ-linolenic acid (DGLA; 20:3 ω-6) in the PC fraction. In contrast, a diagnosis of PD was associated with higher absolute concentrations of SFA, MUFA and ω-6 PUFA in the PI + PS fractions. However, relative PI + PS contents of ω-6 PUFA were lower in both PD and ET patients. Finally, linear regression analyses showed that the ω-3:ω-6 PUFA ratio was positively associated with age of death, but inversely associated with insoluble α-synuclein. Although it remains unclear how these FA changes in the cerebellum are implicated in ET or PD pathophysiology, they may be related to an ongoing neurodegenerative process or to dietary intake differences. The present findings provide a window of opportunity for lipid-based therapeutic nutritional intervention.

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本质性震颤患者小脑中的死后脂肪酸异常
脂肪酸在大脑功能中起着许多关键作用,但尚未对本质性震颤(ET)进行过研究,而本质性震颤是一种常见的运动障碍,被怀疑与小脑功能障碍有关。在此,我们报告了通过气相色谱法对 ET 患者(n = 15)、帕金森病(PD)患者(n = 15)和对照组(n = 17)的小脑皮层脂肪酸谱进行的尸检比较分析。采用薄层色谱法分离磷脂酰胆碱(PC)、磷脂酰乙醇胺(PE)和磷脂酰肌醇(PI)/磷脂酰丝氨酸(PS)并分别进行分析。首先,与帕金森病患者相比,ET患者从小脑皮质中提取的脂肪酸总量较低,其中包括单不饱和脂肪酸(MUFA)和多不饱和脂肪酸(PUFA)。ET诊断与小脑PE部分饱和脂肪酸(SFA)和多不饱和脂肪酸(DHA和ARA)含量较低有关,但与PC部分二氢-γ-亚麻酸(DGLA;20:3 ω-6)相对含量较高有关。相比之下,PD 诊断与 PI + PS 组分中较高的 SFA、MUFA 和 ω-6 PUFA 绝对含量有关。然而,PD 和 ET 患者 PI + PS 中的ω-6 PUFA 相对含量都较低。最后,线性回归分析表明,ω-3:ω-6 PUFA比率与死亡年龄呈正相关,但与不溶性α-突触核蛋白呈反相关。虽然目前还不清楚小脑中的这些脂肪酸变化如何与ET或PD病理生理学有关,但它们可能与正在进行的神经退行性过程或饮食摄入差异有关。本研究结果为基于脂质的营养治疗干预提供了机会之窗。
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来源期刊
Cerebellum
Cerebellum 医学-神经科学
CiteScore
6.40
自引率
14.30%
发文量
150
审稿时长
4-8 weeks
期刊介绍: Official publication of the Society for Research on the Cerebellum devoted to genetics of cerebellar ataxias, role of cerebellum in motor control and cognitive function, and amid an ageing population, diseases associated with cerebellar dysfunction. The Cerebellum is a central source for the latest developments in fundamental neurosciences including molecular and cellular biology; behavioural neurosciences and neurochemistry; genetics; fundamental and clinical neurophysiology; neurology and neuropathology; cognition and neuroimaging. The Cerebellum benefits neuroscientists in molecular and cellular biology; neurophysiologists; researchers in neurotransmission; neurologists; radiologists; paediatricians; neuropsychologists; students of neurology and psychiatry and others.
期刊最新文献
Correction: Systematic Review and Meta-Analysis of the Diagnostic Accuracy of a Graded Gait and Truncal Instability Rating in Acutely Dizzy and Ataxic Patients. Correction: Long-Term Follow-Up Before and During Riluzole Treatment in Six Patients from Two Families with Spinocerebellar Ataxia Type 7. Correction: Silica Nanoparticles from Melon Seed Husk Abrogated Binary Metal(loid) Mediated Cerebellar Dysfunction by Attenuation of Oxido-inflammatory Response and Upregulation of Neurotrophic Factors in Male Albino Rats. Clinical Heterogeneity of Essential Tremor: Understanding Neural Substrates of Action Tremor Subtypes. The Neuroimmune System and the Cerebellum.
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