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首页> 外文期刊>Cerebral cortex >Parvalbumin Interneurons Shape Neuronal Vulnerability in Blunt TBI
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Parvalbumin Interneurons Shape Neuronal Vulnerability in Blunt TBI

机译:Parvalbumin Interneurons在Blund TBI中塑造神经元脆弱性

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Excessive excitation has been hypothesized to subsume a significant part of the acute damage occurring after traumatic brain injury (TBI). However, reduced neuronal excitability, loss of neuronal firing, and a disturbed excitation/inhibition balance have been detected. Parvalbumin (PV) interneurons are major regulators of perisomatic inhibition, principal neurons firing, and overall cortical excitability. However, their role in acute TBI pathogenic cascades is unclear. We exploited the chemogenetic Pharmacologically Selective Activation Module and Pharmacologically Selective Effector Module control of PV-Cre(+) neurons and the Designer Receptors Exclusively Activated by Designer Drug (DREADD) control of principal neurons in a blunt model of TBI to explore the role of inhibition in shaping neuronal vulnerability to TBI. We demonstrated that inactivation of PV interneurons at the instance or soon after trauma enhances survival of principal neurons and reduces gliosis at 7 dpi whereas, activation of PV interneurons decreased neuronal survival. The protective effect of PV inactivation was suppressed by expressing the nuclear calcium buffer PV-nuclear localisation sequence in principal neurons, implying an activity-dependent neuroprotective signal. In fact, protective effects were obtained by increasing the excitability of principal neurons directly using DREADDs. Thus, we show that sustaining neuronal excitation in the early phases of TBI may reduce neuronal vulnerability by increasing activity-dependent survival, while excess activation of perisomatic inhibition is detrimental to neuronal integrity.
机译:已经假设过度激发以占有在创伤性脑损伤(TBI)后发生的急性损伤的重要部分。然而,已检测到神经元兴奋性,神经元烧制的丧失以及检测到令人不安的激发/抑制平衡。 Parvalbumin(PV)中间核是漂白的抑制作用,主要神经元烧制的主要调节因子,以及整体皮质兴奋性。然而,它们在急性TBI致病级联中的作用尚不清楚。我们利用了化学药物选择性活化模块和PV-CRE(+)神经元的药理学选择性效应模块控制,并由主神经元的设计者药物(Dreadd)控制专门激活的PV-CRE(+)神经元和设计者受体中的TBI钝模型中的主体神经元进行探讨抑制作用在形成TBI的神经元脆弱性中。我们证明,在案例中或在创伤后,在创伤后的生存并在7 dpi减少胶质症,而PV中间核素的激活降低了神经元存活率的激活率下降。通过在主神经元中表达核钙缓冲液PV核定位序列来抑制PV失活的保护作用,暗示活性依赖性神经保护信号。实际上,通过使用Dreadds增加主要神经元的兴奋来获得保护作用。因此,我们表明,通过增加活性依赖性的存活率,TBI早期阶段的维持神经元激发可以减少神经元脆弱性,而过度激活漂白的抑制性是有害的神经元完整性。

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