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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Tumour necrosis factor-mediated homeostatic synaptic plasticity in behavioural models: testing a role in maternal immune activation
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Tumour necrosis factor-mediated homeostatic synaptic plasticity in behavioural models: testing a role in maternal immune activation

机译:肿瘤坏死因子介导的行为模型中的稳态突触可塑性:在母体免疫激活中测试作用

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The proinflammatory cytokine tumour necrosis factor-alpha (TNF alpha) has long been characterized for its role in the innate immune system, but more recently has been found to have a distinct role in the nervous system that does not overlap with other proinflammatory cytokines. Through regulation of neuronal glutamate and GABA receptor trafficking, TNF mediates a homeostatic form of synaptic plasticity, but plays no direct role in Hebbian forms of plasticity. As yet, there is no evidence to suggest that this adaptive plasticity plays a significant role in normal development, but it does maintain neuronal circuit function in the face of several types of disruption. This includes developmental plasticity in primary sensory cortices, as well as modulating the response to antidepressants, chronic antipsychotics and drugs of abuse. TNF is also a prominent component of the neuroinflammation occurring in most neuropathologies, but the role of TNF-mediated synaptic plasticity in this context remains to be determined. We tested this in a maternal immune activation (MIA) model of neurodevelopmental disorders. Using TNF-/- mice, we observed that TNF is not required for the expression of abnormal social or anxious behaviour in this model. This indicates that TNF does not uniquely contribute to the development of neuronal dysfunction in this model, and suggests that during neuroinflammatory events, compensation between the various proinflammatory cytokines is the norm.
机译:促炎细胞因子肿瘤坏死因子-α(TNF alpha)已经表现为其在先天免疫系统中的作用,但最近已发现在不与其他促炎细胞因子重叠的神经系统中具有明显的作用。通过调节神经元谷氨酸和GABA受体贩运,TNF介导突触塑性的稳态形式,但在Hebbian的可塑性中发挥了直接作用。如此,没有证据表明这种自适应可塑性在正常发展中发挥着重要作用,但它确实在几种类型的中断面上保持神经元电路功能。这包括主要感觉皮质的发育可塑性,以及调节对抗抑郁药,慢性抗精神病药和滥用药物的反应。 TNF也是大多数神经病理学发生的神经炎炎症的突出成分,但在这种情况下TNF介导的突触塑性的作用仍有待确定。我们在神经发育障碍患者的母体免疫激活(MIA)模型中进行了测试。使用TNF - / - 小鼠,我们观察到该模型中的异常社会或焦虑行为的表达不需要TNF。这表明TNF没有唯一有助于该模型中神经元功能障碍的发展,并表明在神经胰腺炎事件期间,各种植物细胞因子之间的补偿是常态。

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