慢性疼痛
神经病理学
神经科学
海马结构
SNi公司
海马体
心理学
神经可塑性
神经病理性疼痛
痴呆
医学
内科学
疾病
生物
生物化学
水解
酸水解
作者
Sara Guerreiro,Marco Rafael Guimarães,Joana Silva,Chrysoula Dioli,Anastasia Vamvaka-Iakovou,Raquel Sousa,Patrícia Gomes,Anastasia Megalokonomou,Carlos Campos‐Marques,Ana Margarida Cunha,Armando Almeida,Nuno Sousa,Hugo Leite‐Almeida,Ioannis Sotiropoulos
标识
DOI:10.1038/s41380-022-01707-3
摘要
Persistent pain has been recently suggested as a risk factor for dementia. Indeed, chronic pain is frequently accompanied by maladaptive brain plasticity and cognitive deficits whose molecular underpinnings are poorly understood. Despite the emerging role of Tau as a key regulator of neuronal plasticity and pathology in diverse brain disorders, the role of Tau has never been studied in the context of chronic pain. Using a peripheral (sciatic) neuropathy to model chronic pain in mice-spared nerve injury (SNI) for 4 months-in wildtype as well as P301L-Tau transgenic mice, we hereby demonstrate that SNI triggers AD-related neuropathology characterized by Tau hyperphosphorylation, accumulation, and aggregation in hippocampus followed by neuronal atrophy and memory deficits. Molecular analysis suggests that SNI inhibits autophagy and reduces levels of the Rab35, a regulator of Tau degradation while overexpression of Rab35 or treatment with the analgesic drug gabapentin reverted the above molecular changes leading to neurostructural and memory recovery. Interestingly, genetic ablation of Tau blocks the establishment of SNI-induced hippocampal morphofunctional deficits supporting the mediating role of Tau in SNI-evoked hippocampal pathology and memory impairment. These findings reveal that exposure to chronic pain triggers Tau-related neuropathology and may be relevant for understanding how chronic pain precipitates memory loss leading to dementia.
科研通智能强力驱动
Strongly Powered by AbleSci AI