Madden Maxwell B, Schaefgen Chloe, Vedak Binita, Kwon Jian, Pedra Kiara S Dresp, Sheats Samuel H, Puche Adam C, Wolff Steffen B E, Mathur Brian N
Department of Pharmacology and Physiology, School of Medicine, University of Maryland, Baltimore, MD, USA.
Department of Psychiatry, School of Medicine, University of Maryland, Baltimore, MD, USA.
Nat Commun. 2025 Aug 19;16(1):7733. doi: 10.1038/s41467-025-62980-8.
Through its widespread reciprocal connections with the cerebral cortex, the claustrum is implicated in sleep and waking cortical network states. Yet, basic knowledge of neuromodulation in this structure is lacking. The claustrum is richly innervated by serotonergic fibers, expresses serotonin receptors, and is suggested to play a role in the ability of psilocybin, which is metabolized to the non-specific serotonin receptor agonist psilocin, to disrupt cortex-wide network states. We therefore addressed the possible role of serotonin, and the classic psychedelic psilocybin, in modulating cortical signaling through the claustrum. We show that serotonin activates 5-HT receptors on anterior cingulate cortex inputs - a primary driver of claustrum activity - to suppress signaling to parietal association cortex-projecting claustrum neurons. Additionally, we demonstrate that psilocybin injection also activates anterior cingulate cortex presynaptic 5-HT receptors to suppress cortical signaling through the claustrum. Thus, serotonin, via 5-HT, may provide gain-control of cortical input to the claustrum, a mechanism that may be directly targeted by psilocybin to modulate downstream cortical network states.
通过与大脑皮层广泛的相互连接,屏状核与睡眠和清醒时的皮层网络状态有关。然而,关于该结构中神经调节的基础知识仍很缺乏。屏状核富含5-羟色胺能纤维,表达5-羟色胺受体,并且被认为在裸盖菇素(可代谢为非特异性5-羟色胺受体激动剂脱磷酸裸盖菇素)破坏全皮层网络状态的能力中发挥作用。因此,我们研究了5-羟色胺以及经典致幻剂裸盖菇素在通过屏状核调节皮层信号传导中可能发挥的作用。我们发现,5-羟色胺激活前扣带回皮层输入上的5-羟色胺受体(屏状核活动的主要驱动因素),以抑制向顶叶联合皮层投射的屏状核神经元的信号传导。此外,我们证明注射裸盖菇素也会激活前扣带回皮层的突触前5-羟色胺受体,以抑制通过屏状核的皮层信号传导。因此,5-羟色胺可能通过5-羟色胺受体对屏状核的皮层输入进行增益控制,而裸盖菇素可能直接靶向这一机制来调节下游皮层网络状态。