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裸盖菇素降低了小鼠听觉皮层的神经反应性并增加了功能连接性,同时保持了纯音频率选择性。

Psilocybin decreases neural responsiveness and increases functional connectivity while preserving pure-tone frequency selectivity in mouse auditory cortex.

机构信息

Department of Psychology, University of Maryland, College Park, Maryland, United States.

Program in Neuroscience and Cognitive Science, University of Maryland, College Park, Maryland, United States.

出版信息

J Neurophysiol. 2024 Jul 1;132(1):45-53. doi: 10.1152/jn.00124.2024. Epub 2024 May 29.

Abstract

Psilocybin is a serotonergic psychedelic believed to have therapeutic potential for neuropsychiatric conditions. Despite well-documented prevalence of perceptual alterations, hallucinations, and synesthesia associated with psychedelic experiences, little is known about how psilocybin affects sensory cortex or alters the activity of neurons in awake animals. To investigate, we conducted two-photon imaging experiments in auditory cortex of awake mice and collected video of free-roaming mouse behavior, both at baseline and during psilocybin treatment. In comparison with pre-dose neural activity, a 2 mg/kg ip dose of psilocybin initially increased the amplitude of neural responses to sound. Thirty minutes post-dose, behavioral activity and neural response amplitudes decreased, yet functional connectivity increased. In contrast, control mice given intraperitoneal saline injections showed no significant changes in either neural or behavioral activity across conditions. Notably, neuronal stimulus selectivity remained stable during psilocybin treatment, for both tonotopic cortical maps and single-cell pure-tone frequency tuning curves. Our results mirror similar findings regarding the effects of serotonergic psychedelics in visual cortex and suggest that psilocybin modulates the balance of intrinsic versus stimulus-driven influences on neural activity in auditory cortex. Recent studies have shown promising therapeutic potential for psychedelics in treating neuropsychiatric conditions. Musical experience during psilocybin-assisted therapy is predictive of treatment outcome, yet little is known about how psilocybin affects auditory processing. Here, we conducted two-photon imaging experiments in auditory cortex of awake mice that received a dose of psilocybin. Our results suggest that psilocybin modulates the roles of intrinsic neural activity versus stimulus-driven influences on auditory perception.

摘要

裸盖菇素是一种血清素能致幻剂,被认为对神经精神疾病具有治疗潜力。尽管与迷幻体验相关的知觉改变、幻觉和联觉已有充分的文献记载,但对于裸盖菇素如何影响感觉皮层或改变清醒动物神经元的活动知之甚少。为了研究这一问题,我们在清醒小鼠的听觉皮层中进行了双光子成像实验,并在基线和裸盖菇素治疗期间收集了自由活动小鼠行为的视频。与给药前的神经活动相比,2 毫克/千克腹腔注射的裸盖菇素最初增加了对声音的神经反应幅度。给药后 30 分钟,行为活动和神经反应幅度下降,但功能连接性增加。相比之下,给予腹腔注射生理盐水的对照小鼠在不同条件下的神经或行为活动均无明显变化。值得注意的是,在裸盖菇素治疗期间,无论是在音高皮层图还是在单个神经元的纯音频率调谐曲线上,神经元的刺激选择性都保持稳定。我们的结果与关于血清素能致幻剂对视觉皮层影响的类似发现相吻合,并表明裸盖菇素调节了听觉皮层中内在与刺激驱动对神经活动影响之间的平衡。最近的研究表明,致幻剂在治疗神经精神疾病方面具有有前景的治疗潜力。在裸盖菇素辅助治疗期间的音乐体验与治疗效果相关,但对于裸盖菇素如何影响听觉处理知之甚少。在这里,我们在清醒小鼠的听觉皮层中进行了双光子成像实验,这些小鼠接受了裸盖菇素的剂量。我们的结果表明,裸盖菇素调节了内在神经活动与刺激驱动对听觉感知的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e43/11383378/3c14dc919f97/jn-00124-2024r01.jpg

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