Ectopic expression of neuronal adenosine kinase, a biomarker in mesial temporal lobe epilepsy without hippocampal sclerosis.

IF 4 2区 医学 Q1 CLINICAL NEUROLOGY Neuropathology and Applied Neurobiology Pub Date : 2023-08-01 DOI:10.1111/nan.12926
Mengyi Guo, Jing Wang, Zhonghua Xiong, Xiongfei Wang, Yujiao Yang, Yifan Zhang, Chongyang Tang, Jing Zhang, Yuguang Guan, Fan Chen, Kun Yao, Pengfei Teng, Jian Zhou, Feng Zhai, Detlev Boison, Guoming Luan, Tianfu Li
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Abstract

Aims: Mesial temporal lobe epilepsy without hippocampal sclerosis (no-HS MTLE) refers to those MTLE patients who have neither magnetic resonance imaging (MRI) lesions nor definite pathological evidence of hippocampal sclerosis. They usually have resistance to antiepileptic drugs, difficulties in precise seizure location and poor surgical outcomes. Adenosine is a neuroprotective neuromodulator that acts as a seizure terminator in the brain. The role of adenosine in no-HS MTLE is still unclear. Further research to explore the aetiology and pathogenesis of no-HS MTLE may help to find new therapeutic targets.

Methods: In surgically resected hippocampal specimens, we examined the maladaptive changes of the adenosine system of patients with no-HS MTLE. In order to better understand the dysregulation of the adenosine pathway in no-HS MTLE, we developed a rat model based on the induction of focal cortical lesions through a prenatal freeze injury.

Results: We first examined the adenosine system in no-HS MTLE patients who lack hippocampal neuronal loss and found ectopic expression of the astrocytic adenosine metabolising enzyme adenosine kinase (ADK) in hippocampal pyramidal neurons, as well as downregulation of neuronal A1 receptors (A1 Rs) in the hippocampus. In the no-HS MTLE model rats, the transition of ADK from neuronal expression to an adult pattern of glial expression in the hippocampus was significantly delayed.

Conclusions: Ectopic expression of neuronal ADK might be a pathological hallmark of no-HS MTLE. Maladaptive changes in adenosine metabolism might be a novel target for therapeutic intervention in no-HS MTLE.

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神经元腺苷激酶的异位表达是无海马硬化症的颞叶中叶癫痫的生物标志物。
目的:无海马硬化的中颞叶癫痫(no-HS MTLE)是指那些既无磁共振成像(MRI)病灶,也无明确海马硬化病理证据的中颞叶癫痫患者。他们通常对抗癫痫药物有抗药性,难以精确定位发作位置,手术效果不佳。腺苷是一种具有神经保护作用的神经调节剂,在大脑中起着终止癫痫发作的作用。腺苷在无HS MTLE中的作用尚不清楚。进一步研究无HS型MTLE的病因和发病机制可能有助于找到新的治疗靶点:方法:在手术切除的海马标本中,我们研究了无HS型MTLE患者腺苷系统的不良变化。为了更好地了解无HS型MTLE患者腺苷通路的失调,我们建立了一个基于产前冷冻损伤诱导局灶性皮质病变的大鼠模型:我们首先研究了无HS MTLE患者的腺苷系统,发现海马锥体神经元中星形胶质细胞腺苷代谢酶腺苷激酶(ADK)异位表达,以及海马神经元A1受体(A1 Rs)下调。在无HS MTLE模型大鼠中,ADK在海马中从神经元表达过渡到胶质表达的成年模式的时间明显延迟:结论:神经元ADK的异位表达可能是无HS MTLE的病理特征。结论:神经元ADK的异位表达可能是无HS型MTLE的病理特征,腺苷代谢的适应性改变可能是治疗无HS型MTLE的新靶点。
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来源期刊
CiteScore
8.20
自引率
2.00%
发文量
87
审稿时长
6-12 weeks
期刊介绍: Neuropathology and Applied Neurobiology is an international journal for the publication of original papers, both clinical and experimental, on problems and pathological processes in neuropathology and muscle disease. Established in 1974, this reputable and well respected journal is an international journal sponsored by the British Neuropathological Society, one of the world leading societies for Neuropathology, pioneering research and scientific endeavour with a global membership base. Additionally members of the British Neuropathological Society get 50% off the cost of print colour on acceptance of their article.
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