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TRPC通道的阻断限制创伤性脑损伤后胆碱能驱动的过度兴奋和癫痫易感性。

Blockade of TRPC Channels Limits Cholinergic-Driven Hyperexcitability and Seizure Susceptibility After Traumatic Brain Injury.

作者信息

Carver Chase M, DeWitt Haley R, Stoja Aiola P, Shapiro Mark S

机构信息

Department of Cellular and Integrative Physiology, University of Texas Health San Antonio, San Antonio, TX, United States.

出版信息

Front Neurosci. 2021 Aug 19;15:681144. doi: 10.3389/fnins.2021.681144. eCollection 2021.

Abstract

We investigated the contribution of excitatory transient receptor potential canonical (TRPC) cation channels to posttraumatic hyperexcitability in the brain 7 days following controlled cortical impact model of traumatic brain injury (TBI) to the parietal cortex in male adult mice. We investigated if TRPC1/TRPC4/TRPC5 channel expression is upregulated in excitatory neurons after TBI in contribution to epileptogenic hyperexcitability in key hippocampal and cortical circuits that have substantial cholinergic innervation. This was tested by measuring TRPC1/TRPC4/TRPC5 protein and messenger RNA (mRNA) expression, assays of cholinergic function, neuronal Ca imaging in brain slices, and seizure susceptibility after TBI. We found region-specific increases in expression of TRPC1, TRPC4, and TRPC5 subunits in the hippocampus and cortex following TBI. The dentate gyrus, CA3 region, and cortex all exhibited robust upregulation of TRPC4 mRNA and protein. TBI increased cFos activity in dentate gyrus granule cells (DGGCs) and layer 5 pyramidal neurons both at the time of TBI and 7 days post-TBI. DGGCs displayed greater magnitude and duration of acetylcholine-induced rises in intracellular Ca in brain slices from mice subjected to TBI. The TBI mice also exhibited greater seizure susceptibility in response to pentylenetetrazol-induced kindling. Blockade of TRPC4/TRPC5 channels with M084 reduced neuronal hyperexcitation and impeded epileptogenic progression of kindling. We observed that the time-dependent upregulation of TRPC4/TRPC5-containing channels alters cholinergic responses and activity of principal neurons acting to increase proexcitatory sensitivity. The underlying mechanism includes acutely decreased acetylcholinesterase function, resulting in greater G -coupled muscarinic receptor activation of TRPC channels. Overall, our evidence suggests that TBI-induced plasticity of TRPC channels strongly contributes to overt hyperexcitability and primes the hippocampus and cortex for seizures.

摘要

我们研究了兴奋性瞬时受体电位香草酸亚型(TRPC)阳离子通道在成年雄性小鼠创伤性脑损伤(TBI)顶叶皮质的控制性皮质撞击模型后7天对脑内创伤后兴奋性过高的作用。我们研究了TBI后兴奋性神经元中TRPC1/TRPC4/TRPC5通道表达是否上调,这有助于在具有大量胆碱能神经支配的关键海马和皮质回路中产生致痫性兴奋性过高。通过测量TRPC1/TRPC4/TRPC5蛋白和信使核糖核酸(mRNA)表达、胆碱能功能测定、脑片神经元钙成像以及TBI后的癫痫易感性来进行检测。我们发现TBI后海马和皮质中TRPC1、TRPC4和TRPC5亚基的表达存在区域特异性增加。齿状回、CA3区和皮质均表现出TRPC4 mRNA和蛋白的强烈上调。TBI在损伤时和TBI后7天均增加了齿状回颗粒细胞(DGGCs)和第5层锥体神经元中的cFos活性。来自TBI小鼠的脑片中,DGGCs在乙酰胆碱诱导下细胞内钙升高的幅度和持续时间更大。TBI小鼠对戊四氮诱导的点燃也表现出更高的癫痫易感性。用M084阻断TRPC4/TRPC5通道可降低神经元兴奋性过高,并阻碍点燃的致痫进程。我们观察到,含TRPC4/TRPC5通道的时间依赖性上调改变了胆碱能反应以及主要神经元的活性,从而增加了促兴奋性敏感性。潜在机制包括乙酰胆碱酯酶功能急性降低,导致TRPC通道的G蛋白偶联毒蕈碱受体激活增强。总体而言,我们的证据表明,TBI诱导的TRPC通道可塑性对明显的兴奋性过高有强烈作用,并使海马和皮质易发生癫痫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b46/8416999/6ad0e82c4e19/fnins-15-681144-g001.jpg

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