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α-突触核蛋白聚集降低皮质杏仁核连接并损害小鼠的社交行为。

α-Synuclein aggregation decreases cortico-amygdala connectivity and impairs social behavior in mice.

机构信息

Department of Neurodegenerative Science, Van Andel Research Institute, Grand Rapids, MI 49503, USA; Department of Pharmacology and Physiology, Georgetown University Medical Center, Washington DC 20007, USA.

Department of Neurodegenerative Science, Van Andel Research Institute, Grand Rapids, MI 49503, USA.

出版信息

Neurobiol Dis. 2024 Nov;202:106702. doi: 10.1016/j.nbd.2024.106702. Epub 2024 Oct 13.

Abstract

Abnormal accumulation of insoluble α-synuclein (α-Syn) inclusions in neurons, neurites, and glial cells is the defining neuropathology of synucleinopathies, including Parkinson's disease (PD), dementia with Lewy bodies (DLB), and multiple system atrophy. Accumulation of α-Syn inclusions in the amygdala has been well-documented in post-mortem studies of PD and DLB brains, as well as preclinical animal models of these conditions. Though α-Syn pathology is closely associated with neurodegeneration, there is a poor correlation between neuronal loss in the amygdala and the clinical features of PD and DLB. Moreover, functional interaction between the cerebral cortex and the amygdala is critical to regulating emotion, motivation, and social behaviors. The cortico-amygdala functional interaction is likely to be disrupted by the development of α-Syn pathology in the brain. Thus, we hypothesize that neuronal α-Syn inclusions disrupt cortical modulation of the amygdala circuits and are sufficient to drive social behavioral deficits. In the present work, we designed a series of longitudinal studies to rigorously measure the time courses of neurodegeneration, functional impairment of cortico-amygdala connectivity, and development of amygdala-dependent social behavioral deficits to test this hypothesis. We injected α-Syn preformed fibrils (PFFs) into the dorsal striatum to induce α-Syn aggregation in the amygdala and the medial prefrontal cortex (mPFC) of C57BL6 mice of both sexes, followed by a detailed analysis of temporal development of α-Syn pathology, synaptic deficits, and neuronal loss in the amygdala, as well as behavioral deficits at 3-12 months post injections. Development of α-Syn inclusions caused losses of cortical axon terminals and cell death in the basolateral amygdala (BLA) at 6- and 12-months post injections, respectively. At a relatively early stage of 3 months post injections, the connection strength of the mPFC-BLA synapse was decreased in PFFs-injection mice compared to controls. Meanwhile, the PFFs-injected mice showed impaired social interaction behavior, which was rescued by chemogenetic stimulation of mPFC-BLA connections. Altogether, we presented a series of evidence to delineate circuit events in the amygdala associated with the accumulation of α-Syn inclusions in the mouse brain, highlighting that functional impairment of the amygdala is sufficient to cause social behavior deficits. The present work further suggests that early circuit modulation could be an effective approach to alleviate symptoms associated with α-Syn pathology, necessitating studies of functional consequences of α-Syn aggregation.

摘要

异常聚集的不溶性α-突触核蛋白(α-Syn)包涵体存在于神经元、神经突和神经胶质细胞中,这是突触核蛋白病的神经病理学定义,包括帕金森病(PD)、路易体痴呆(DLB)和多系统萎缩症。在 PD 和 DLB 大脑的尸检研究以及这些疾病的临床前动物模型中,杏仁核中 α-Syn 包涵体的积累已得到充分证实。尽管 α-Syn 病理学与神经退行性变密切相关,但杏仁核神经元丢失与 PD 和 DLB 的临床特征之间相关性较差。此外,大脑皮层与杏仁核之间的功能相互作用对于调节情绪、动机和社会行为至关重要。大脑皮层与杏仁核之间的功能相互作用可能因大脑中 α-Syn 病理学的发展而受到破坏。因此,我们假设神经元 α-Syn 包涵体破坏了皮质对杏仁核回路的调制,足以导致社会行为缺陷。在本工作中,我们设计了一系列纵向研究,以严格测量神经退行性变、皮质-杏仁核连接功能障碍的时间进程以及杏仁核依赖性社会行为缺陷的发展,以检验这一假设。我们将 α-Syn 预形成纤维(PFF)注射到背侧纹状体中,以诱导杏仁核和内侧前额叶皮层(mPFC)中的 α-Syn 聚集,然后在注射后 3-12 个月对 α-Syn 病理学、突触缺陷和杏仁核神经元丢失以及行为缺陷的时间发展进行详细分析。α-Syn 包涵体的发展导致皮质轴突末梢和基底外侧杏仁核(BLA)细胞死亡分别在注射后 6 个月和 12 个月。在注射后 3 个月的相对早期阶段,与对照组相比,PFF 注射小鼠的 mPFC-BLA 突触连接强度降低。同时,PFF 注射小鼠表现出社交互动行为受损,通过化学遗传刺激 mPFC-BLA 连接可挽救这种行为缺陷。总之,我们提供了一系列证据来描绘与小鼠大脑中 α-Syn 包涵体积累相关的杏仁核回路事件,强调了杏仁核功能障碍足以导致社会行为缺陷。本工作进一步表明,早期回路调节可能是缓解与 α-Syn 病理学相关症状的有效方法,需要研究 α-Syn 聚集的功能后果。

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