Singapore Bioimaging Consortium, Agency for Science, Technology and Research, Singapore; Institute for Biomedical Engineering, University and ETH Zurich, Switzerland.
Institute for Biomedical Engineering, University and ETH Zurich, Switzerland.
Neuroimage. 2021 Jan 15;225:117456. doi: 10.1016/j.neuroimage.2020.117456. Epub 2020 Oct 15.
Hallucinogenic agents have been proposed as potent antidepressants; this includes the serotonin (5-HT) receptor 2A agonist psilocybin. In human subjects, psilocybin alters functional connectivity (FC) within the default-mode network (DMN), a constellation of inter-connected regions that displays altered FC in depressive disorders. In this study, we investigated the effects of psilocybin on FC across the entire brain with a view to investigate underlying mechanisms. Psilocybin effects were investigated in lightly-anaesthetized mice using resting-state fMRI. Dual-regression analysis identified reduced FC within the ventral striatum in psilocybin- relative to vehicle-treated mice. Refinement of the analysis using spatial references derived from both gene expression maps and viral tracer projection fields revealed two distinct effects of psilocybin: it increased FC between 5-HT-associated networks and cortical areas, including elements of the murine DMN, thalamus, and midbrain; it decreased FC within dopamine (DA)-associated striatal networks. These results suggest that interactions between 5-HT- and DA-regulated neural networks contribute to the neural and therefore psychological effects of psilocybin. Furthermore, they highlight how information on molecular expression patterns and structural connectivity can assist in the interpretation of pharmaco-fMRI findings.
致幻剂已被提议作为有效的抗抑郁药;这包括血清素(5-HT)受体 2A 激动剂裸盖菇素。在人类受试者中,裸盖菇素改变了默认模式网络(DMN)内的功能连接(FC),DMN 是一组相互连接的区域,在抑郁症中显示出改变的 FC。在这项研究中,我们调查了裸盖菇素对整个大脑 FC 的影响,以期研究潜在的机制。我们使用静息态 fMRI 研究了轻度麻醉小鼠中的裸盖菇素作用。双回归分析确定了与裸盖菇素治疗组相比,裸盖菇素治疗组腹侧纹状体的 FC 降低。使用源自基因表达图谱和病毒示踪剂投射场的空间参考对分析进行细化,揭示了裸盖菇素的两个不同作用:它增加了 5-HT 相关网络与皮质区域之间的 FC,包括小鼠 DMN、丘脑和中脑的元素;它降低了与多巴胺(DA)相关的纹状体网络内的 FC。这些结果表明,5-HT 和 DA 调节的神经网络之间的相互作用有助于裸盖菇素的神经和心理作用。此外,它们强调了关于分子表达模式和结构连接的信息如何有助于解释药物 fMRI 研究结果。