Dysbiosis is associated with the behavioral phenotype observed in the triple-hit Wisket rat model of schizophrenia

IF 3.9 2区 医学 Q1 CLINICAL NEUROLOGY Progress in Neuro-Psychopharmacology & Biological Psychiatry Pub Date : 2025-03-20 Epub Date: 2025-01-27 DOI:10.1016/j.pnpbp.2025.111276
Szonja B. Plesz , Leatitia G. Adlan , Alexandra Büki , Nóra Makra , Balázs Ligeti , Bence Ágg , Dóra Szabó , Zoltán S. Zádori , Péter Ferdinandy , Gyongyi Horvath , Gabriella Kekesi
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Abstract

Comorbidities between gastrointestinal diseases and psychiatric disorders have been widely reported, with the gut–brain axis implicated as a potential biological basis. Thus, dysbiosis may play an important role in the etiology of schizophrenia, which is barely detected. Triple-hit Wisket model rats exhibit various schizophrenia-like behavioral phenotypes. The present study aimed to compare the diversity and abundance of gut microbiota in Wisket model and control rats; furthermore, to correlate the microbial taxonomic profiles to indices of behavioral change.
Tail-flick and Ambitus tests were used to assess acute heat pain sensitivity, and record exploration and locomotor activity along with motivation in young adult, control and Wisket model rats. Fecal microbiota composition was profiled by deep sequencing of bacterial 16S rRNA, and it was correlated to behavioral phenotype.
Wisket rats exhibited significantly decreased pain sensitivity, lower locomotor activity and exploration, and impaired motivation compared with controls. No significant differences were observed in bacterial alpha diversity between the groups; however, clear differences in community structure were observed. Wisket rats showed decreases in several genera of Firmicutes and Saccharimonas, and increases in Bacteriodetes and Helicobacter phyla compared with controls. Correlation analysis revealed significant associations between the microbiota profile and the behavioral phenotype.
This is the first demonstration that fecal microbiota composition is markedly altered in a triple-hit schizophrenia rat model, suggesting the contribution of the microbiota–gut–brain axis in the development of the schizophrenia-like behavioral phenotype. Thus targeting the gut microbiota may be a novel approach to treat such impairments.

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在三击Wisket大鼠精神分裂症模型中观察到的生态失调与行为表型相关。
胃肠道疾病和精神疾病之间的合并症已被广泛报道,肠脑轴被认为是潜在的生物学基础。因此,生态失调可能在精神分裂症的病因学中起着重要的作用,这一点很少被发现。三击Wisket模型大鼠表现出多种精神分裂症样行为表型。本研究旨在比较Wisket模型和对照大鼠肠道菌群的多样性和丰度;此外,将微生物分类特征与行为变化指标相关联。用甩尾和Ambitus试验评估年轻成年大鼠、对照组大鼠和Wisket模型大鼠的急性热痛敏感性,并记录探索和运动活动以及动机。通过细菌16S rRNA深度测序分析了粪便微生物群组成,并与行为表型相关。与对照组相比,Wisket大鼠表现出疼痛敏感性明显降低,运动活动和探索能力降低,动机受损。各组间细菌α多样性无显著差异;但在群落结构上存在明显差异。与对照组相比,Wisket大鼠的厚壁菌门和糖单胞菌门数属减少,细菌门和幽门螺杆菌门数属增加。相关分析显示,微生物群特征与行为表型之间存在显著关联。这是首次证明粪便微生物群组成在三重打击精神分裂症大鼠模型中显着改变,表明微生物-肠-脑轴在精神分裂症样行为表型的发展中起作用。因此,针对肠道微生物群可能是治疗这种损伤的一种新方法。
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来源期刊
CiteScore
12.00
自引率
1.80%
发文量
153
审稿时长
56 days
期刊介绍: Progress in Neuro-Psychopharmacology & Biological Psychiatry is an international and multidisciplinary journal which aims to ensure the rapid publication of authoritative reviews and research papers dealing with experimental and clinical aspects of neuro-psychopharmacology and biological psychiatry. Issues of the journal are regularly devoted wholly in or in part to a topical subject. Progress in Neuro-Psychopharmacology & Biological Psychiatry does not publish work on the actions of biological extracts unless the pharmacological active molecular substrate and/or specific receptor binding properties of the extract compounds are elucidated.
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