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Drd1a-Cre+神经元的长期沉默会损害多巴胺能驱动的皮质激活。

Chronic silencing of Drd1a-Cre+ neurons impairs dopaminergic-driven cortical activation.

作者信息

Messore Luis Fernando, Vadisiute Auguste, Edmead Hayley, Durmaz Aleisha, Abuelem Mohammed, Chedotal Flore, Hoerder-Suabedissen Anna, Mann Edward Oliver, Molnár Zoltán

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, United Kingdom.

St John's College, University of Oxford, Oxford, United Kingdom.

出版信息

Front Neuroanat. 2025 Apr 28;19:1548545. doi: 10.3389/fnana.2025.1548545. eCollection 2025.

Abstract

In the somatosensory cortex of transgenic mice, Cre-recombinase is expressed under the control of the dopamine receptor D1 (Drd1a) promoter in lower layer 6. These neurons selectively project to the higher-order thalamic nuclei and participate in the cortico-thalamo-cortical loops involved in sensory processing and stimulus representation. However, the role of dopaminergic modulation in activating this neuronal population during cortical arousal remains poorly understood. In this study, we examined the effects of D1 (SKF-81297) and D2 (Quinpirole) receptor agonists on cortical network activation. We further investigated the consequences of silencing these neurons using a Snap25 conditional knockout mouse model. We report a decrease in cellular and neuronal density in the subplate/L6b with normal development from P8 to adulthood. Conversely, the density of Drd1a-Cre+ neurons goes up in Snap25 cKO brains when comparing the same ages. Moreover, we observe that silencing of Drd1a-Cre+ neurons has no effect on microglial cells. Our results demonstrate that both D1 and D2 agonists require the Drd1a-Cre+ neurons to modulate cortical activity effectively. Our study provides new insights into the fundamental role of Drd1a-Cre+ neurons in cortical activation and sensory processing.

摘要

在转基因小鼠的体感皮层中,Cre重组酶在第6层下层的多巴胺受体D1(Drd1a)启动子控制下表达。这些神经元选择性地投射到高级丘脑核,并参与涉及感觉处理和刺激表征的皮质-丘脑-皮质环路。然而,多巴胺能调制在皮层觉醒期间激活这群神经元中的作用仍知之甚少。在本研究中,我们研究了D1(SKF-81297)和D2(喹吡罗)受体激动剂对皮质网络激活的影响。我们进一步使用Snap25条件性敲除小鼠模型研究了沉默这些神经元的后果。我们报告从出生后第8天到成年期正常发育过程中,亚板/L6b中的细胞和神经元密度降低。相反,在相同年龄比较时,Snap25条件性敲除小鼠脑内Drd1a-Cre+神经元的密度增加。此外,我们观察到沉默Drd1a-Cre+神经元对小胶质细胞没有影响。我们的结果表明,D1和D2激动剂都需要Drd1a-Cre+神经元来有效调节皮质活动。我们的研究为Drd1a-Cre+神经元在皮质激活和感觉处理中的基本作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47bf/12066556/ec99b969192f/fnana-19-1548545-g001.jpg

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