Laboratory for Functional and Metabolic Imaging (LIFMET), École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Center for Psychiatric Neuroscience and Service of Child and Adolescent Psychiatry, Department of Psychiatry, Lausanne University Hospital and University of Lausanne, Prilly-Lausanne, Switzerland.
Mol Psychiatry. 2022 Nov;27(11):4485-4501. doi: 10.1038/s41380-022-01791-5. Epub 2022 Oct 12.
Mood disorders (MD) are a major burden on society as their biology remains poorly understood, challenging both diagnosis and therapy. Among many observed biological dysfunctions, homeostatic dysregulation, such as metabolic syndrome (MeS), shows considerable comorbidity with MD. Recently, CREB-regulated transcription coactivator 1 (CRTC1), a regulator of brain metabolism, was proposed as a promising factor to understand this relationship. Searching for imaging biomarkers and associating them with pathophysiological mechanisms using preclinical models can provide significant insight into these complex psychiatric diseases and help the development of personalized healthcare. Here, we used neuroimaging technologies to show that deletion of Crtc1 in mice leads to an imaging fingerprint of hippocampal metabolic impairment related to depressive-like behavior. By identifying a deficiency in hippocampal glucose metabolism as the underlying molecular/physiological origin of the markers, we could assign an energy-boosting mood-stabilizing treatment, ebselen, which rescued behavior and neuroimaging markers. Finally, our results point toward the GABAergic system as a potential therapeutic target for behavioral dysfunctions related to metabolic disorders. This study provides new insights on Crtc1's and MeS's relationship to MD and establishes depression-related markers with clinical potential.
心境障碍(MD)是社会的主要负担,因为其生物学机制仍了解甚少,这给诊断和治疗带来了挑战。在许多观察到的生物学功能障碍中,内稳态失调,如代谢综合征(MeS),与 MD 有相当大的共病性。最近,CREB 调节转录共激活因子 1(CRTC1),一种大脑代谢的调节剂,被提出作为理解这种关系的有希望的因素。使用临床前模型寻找成像生物标志物并将其与病理生理学机制相关联,可以为这些复杂的精神疾病提供重要的见解,并有助于个性化医疗保健的发展。在这里,我们使用神经影像学技术表明,在小鼠中删除 Crtc1 会导致与抑郁样行为相关的海马代谢损伤的成像特征。通过确定海马葡萄糖代谢不足是标志物的潜在分子/生理起源,我们可以分配一种能量增强的情绪稳定治疗药物,依布硒啉,它可以挽救行为和神经影像学标志物。最后,我们的结果表明 GABA 能系统可能是与代谢紊乱相关的行为功能障碍的潜在治疗靶点。这项研究提供了关于 CRTC1 与 MD 之间关系的新见解,并建立了具有临床潜力的与抑郁相关的标志物。