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The TrkB agonist 7,8-dihydroxyflavone changes the structural dynamics of neocortical pyramidal neurons and improves object recognition in mice

机译:TRKB激动剂7,8-二羟基噻酮改变了新皮质锥体神经元的结构动态,提高了小鼠的物体识别

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摘要

BDNF and its receptor TrkB have important roles in neurodevelopment, neural plasticity, learning, and memory. Alterations in TrkB expression have been described in different CNS disorders. Therefore, drugs interacting with TrkB, specially agonists, are promising therapeutic tools. Among them, the recently described 7,8-dihydroxyflavone (DHF), an orally bioactive compound, has been successfully tested in animal models of these diseases. Recent studies have shown the influence of this drug on the structure of pyramidal neurons, specifically on dendritic spine density. However, there is no information yet on how DHF may alter the structural dynamics of these neurons (i.e., real-time study of the addition/elimination of dendritic spines and axonal boutons ). To gain knowledge on these effects of DHF, we have performed a real-time analysis of spine and axonal dynamics in pyramidal neurons of barrel cortex, using cranial windows and 2-photon microscopy during a chronic oral treatment with this drug. After confirming TrkB expression in these neurons, we found that DHF increased the gain rates of spines and axonal boutons , as well as improved object recognition memory. These results help to understand how the activation of the BDNF-TrkB system can improve basic behavioral tasks through changes in the structural dynamics of pyramidal neurons. Moreover, they highlight DHF as a promising therapeutic vector for certain brain disorders in which this system is altered.
机译:BDNF及其受体TRKB在神经发育,神经可塑性,学习和记忆中具有重要作用。已经在不同的CNS障碍中描述了TRKB表达中的改变。因此,与TRKB相互作用的药物,特别是激动剂,是有前途的治疗工具。其中,最近描述的7,8-二羟基氟(DHF),口服生物活性化合物,在这些疾病的动物模型中成功地测试。最近的研究表明该药物对金字塔神经元结构的影响,特别是树枝状脊柱密度。然而,目前没有关于DHF如何改变这些神经元的结构动态的信息(即,树枝状刺的加法/消除的实时研究)。为了获得关于DHF的这些影响的知识,我们在慢性口服与该药物的慢性口服治疗期间使用颅窗和2-光子显微镜进行了对桶皮层的脊柱神经元的脊柱和轴突动力学的实时分析。在这些神经元中确认TRKB表达后,我们发现DHF增加了脊柱和轴突的增益,以及改善的物体识别存储器。这些结果有助于了解BDNF-TRKB系统的激活如何通过金字塔神经元结构动态的变化来改善基本行为任务。此外,它们将DHF突出显示DHF作为某些脑疾病的有希望的治疗载体,其中该系统被改变。

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