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迷幻和非迷幻 5-HT 受体激动剂在小鼠中的耐受性和交叉耐受性。

Tolerance and Cross-Tolerance among Psychedelic and Nonpsychedelic 5-HT Receptor Agonists in Mice.

机构信息

Department of Physiology & Biophysics, Virginia Commonwealth University School of Medicine, Richmond, Virginia 23298, United States.

Virginia Institute of Psychiatric and Behavioral Genetics, Virginia Commonwealth University, Richmond, Virginia 23298, United States.

出版信息

ACS Chem Neurosci. 2022 Aug 17;13(16):2436-2448. doi: 10.1021/acschemneuro.2c00170. Epub 2022 Jul 28.

Abstract

Classical psychedelics represent a subgroup of serotonergic psychoactive substances characterized by their distinct subjective effects on the human psyche. Another unique attribute of this drug class is that such effects become less apparent after repeated exposure within a short time span. The classification of psychedelics as a subgroup within the serotonergic drug family and the tolerance to their effects are replicated by the murine head twitch response (HTR) behavioral paradigm. Here, we aimed to assess tolerance and cross-tolerance to HTR elicited by psychedelic and nonpsychedelic serotonin 2A receptor (5-HTR) agonists in mice. We show that repeated (4 days) administration of the psychedelic 1-(2,5-dimethoxy-4-iodophenyl)-2-aminopropane (DOI) induced a progressive decrease in HTR behavior. Tolerance to DOI-induced HTR was also observed 24 h after a single administration of this psychedelic. Pretreatment with the 5-HTR antagonist M100907 reduced not only the acute manifestation of DOI-induced HTR, but also the development of tolerance to HTR. Additionally, cross-tolerance became apparent between the psychedelics DOI and lysergic acid diethylamide (LSD), whereas repeated administration of the nonpsychedelic 5-HTR agonist lisuride did not affect the ability of these two psychedelics to induce HTR. At the molecular level, DOI administration led to down-regulation of 5-HTR density in mouse frontal cortex membrane preparations. However, development of tolerance to the effect of DOI on HTR remained unchanged in β-arrestin-2 knockout mice. Together, these data suggest that tolerance to HTR induced by psychedelics involves activation of the 5-HTR, is not observable upon repeated administration of nonpsychedelic 5-HTR agonists, and occurs via a signaling mechanism independent of β-arrestin-2.

摘要

经典迷幻剂代表了一组血清素能精神活性物质,其特征是对人类心理有独特的主观影响。这类药物的另一个独特属性是,在短时间内重复暴露后,这种效果变得不那么明显。迷幻剂被归类为血清素能药物家族的一个亚组,以及对其效果的耐受性,都可以通过鼠类头部抽搐反应(HTR)行为范式得到复制。在这里,我们旨在评估迷幻剂和非迷幻剂 5-羟色胺 2A 受体(5-HTR)激动剂对 HTR 的耐受性和交叉耐受性在小鼠中的作用。我们发现,重复(4 天)给予迷幻剂 1-(2,5-二甲氧基-4-碘苯基)-2-氨基丙烷(DOI)可导致 HTR 行为逐渐减少。在单次给予这种迷幻剂后 24 小时也观察到对 DOI 诱导的 HTR 的耐受性。5-HTR 拮抗剂 M100907 的预处理不仅降低了 DOI 诱导的 HTR 的急性表现,而且还降低了对 HTR 的耐受性的发展。此外,DOI 和麦角酸二乙酰胺(LSD)之间出现了交叉耐受性,而重复给予非迷幻剂 5-HTR 激动剂利舒脲并不影响这两种迷幻剂诱导 HTR 的能力。在分子水平上,DOI 给药导致小鼠前额皮质膜制剂中 5-HTR 密度下调。然而,在β-arrestin-2 敲除小鼠中,DOI 对 HTR 作用的耐受性发展保持不变。总之,这些数据表明,迷幻剂诱导的 HTR 耐受性涉及 5-HTR 的激活,在重复给予非迷幻剂 5-HTR 激动剂时观察不到,并且通过独立于β-arrestin-2 的信号机制发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b927/10411500/130bfb7cb2b4/nihms-1920945-f0002.jpg

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