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The gut microbiome from patients with schizophrenia modulates the glutamate-glutamine-GABA cycle and schizophrenia-relevant behaviors in mice

机译:精神分裂症患者的肠道微生物组可调节小鼠的谷氨酸-谷氨酰胺-GABA循环和精神分裂症相关行为

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摘要

Schizophrenia (SCZ) is a devastating mental disorder with poorly defined underlying molecular mechanisms. The gut microbiome can modulate brain function and behaviors through the microbiota-gut-brain axis. Here, we found that unmedicated and medicated patients with SCZ had a decreased microbiome α-diversity index and marked disturbances of gut microbial composition versus healthy controls (HCs). Several unique bacterial taxa (e.g., Veillonellaceae and Lachnospiraceae) were associated with SCZ severity. A specific microbial panel (Aerococcaceae, Bifidobacteriaceae, Brucellaceae, Pasteurellaceae, and Rikenellaceae) enabled discriminating patients with SCZ from HCs with 0.769 area under the curve. Compared to HCs, germ-free mice receiving SCZ microbiome fecal transplants had lower glutamate and higher glutamine and GABA in the hippocampus and displayed SCZ-relevant behaviors similar to other mouse models of SCZ involving glutamatergic hypofunction. Together, our findings suggest that the SCZ microbiome itself can alter neurochemistry and neurologic function in ways that may be relevant to SCZ pathology.
机译:精神分裂症(SCZ)是一种破坏性的精神障碍,其潜在的分子机制尚不明确。肠道微生物组可以通过微生物群-肠脑轴来调节大脑功能和行为。在这里,我们发现SCZ的未药物治疗和药物治疗的患者与健康对照组(HCs)相比,微生物组α多样性指数降低,肠道微生物组成明显受损。几种独特的细菌类群(例如Veillonellaceae和Lachnospiraceae)与SCZ严重程度有关。特定的微生物检测组(航空菌科,双歧杆菌科,布鲁氏菌科,巴斯德杆菌科和蓖麻科)可以区分SCZ患者与曲线下面积为0.769的HC。与HCs相比,接受SCZ微生物组粪便移植的无菌小鼠海马中的谷氨酸含量较低,谷氨酰胺和GABA较高,并且与其他SCZ小鼠模型(涉及谷氨酸能功能低下)表现出与SCZ相关的行为。总之,我们的发现表明SCZ微生物组本身可以以可能与SCZ病理学相关的方式改变神经化学和神经系统功能。

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