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评估膳食维生素 D 水平对奥氮平引起的代谢副作用的影响:关注内源性大麻素组-肠道微生物组轴。

Assessment of the Effects of Dietary Vitamin D Levels on Olanzapine-Induced Metabolic Side Effects: Focus on the Endocannabinoidome-Gut Microbiome Axis.

机构信息

Centre de Recherche, l'Institut Universitaire de Cardiologie et de Pneumologie de Québec (CRIUCPQ), Québec, QC G1V 4G5, Canada.

Département de Médecine, Faculté de Médecine, Université Laval, Québec, QC G1V 0A6, Canada.

出版信息

Int J Mol Sci. 2021 Nov 16;22(22):12361. doi: 10.3390/ijms222212361.

Abstract

Vitamin D deficiency is associated with poor mental health and dysmetabolism. Several metabolic abnormalities are associated with psychotic diseases, which can be compounded by atypical antipsychotics that induce weight gain and insulin resistance. These side-effects may be affected by vitamin D levels. The gut microbiota and endocannabinoidome (eCBome) are significant regulators of both metabolism and mental health, but their role in the development of atypical antipsychotic drug metabolic side-effects and their interaction with vitamin D status is unknown. We studied the effects of different combinations of vitamin D levels and atypical antipsychotic drug (olanzapine) exposure on whole-body metabolism and the eCBome-gut microbiota axis in female C57BL/6J mice under a high fat/high sucrose (HFHS) diet in an attempt to identify a link between the latter and the different metabolic outputs induced by the treatments. Olanzapine exerted a protective effect against diet-induced obesity and insulin resistance, largely independent of dietary vitamin D status. These changes were concomitant with olanzapine-mediated decreases in expression and increases in the levels of its agonists, including various -acylethanolamines and 2-monoacylglycerols, which are consistent with the observed improvement in adiposity and metabolic status. Furthermore, while global gut bacteria community architecture was not altered by olanzapine, we identified changes in the relative abundances of various commensal bacterial families. Taken together, changes of eCBome and gut microbiota families under our experimental conditions might contribute to olanzapine and vitamin D-mediated inhibition of weight gain in mice on a HFHS diet.

摘要

维生素 D 缺乏与心理健康不良和代谢异常有关。几种代谢异常与精神病有关,而非典型抗精神病药会导致体重增加和胰岛素抵抗,从而使这些情况恶化。这些副作用可能受维生素 D 水平的影响。肠道微生物群和内源性大麻素系统(eCBome)是代谢和心理健康的重要调节剂,但它们在非典型抗精神病药代谢副作用发展中的作用及其与维生素 D 状态的相互作用尚不清楚。我们研究了不同维生素 D 水平和非典型抗精神病药(奥氮平)暴露组合对高脂肪/高蔗糖(HFHS)饮食下雌性 C57BL/6J 小鼠全身代谢和内源性大麻素系统-肠道微生物群轴的影响,试图确定后者与不同代谢产物之间的联系由治疗引起。奥氮平对饮食诱导的肥胖和胰岛素抵抗有保护作用,这在很大程度上独立于饮食中的维生素 D 状态。这些变化伴随着奥氮平介导的表达降低和其激动剂水平升高,包括各种 -酰基乙醇胺和 2-单酰甘油,这与观察到的肥胖和代谢状态的改善一致。此外,尽管奥氮平并未改变肠道细菌群落的整体结构,但我们发现了各种共生细菌家族相对丰度的变化。综上所述,在我们的实验条件下,内源性大麻素系统和肠道微生物群家族的变化可能有助于奥氮平和维生素 D 抑制 HFHS 饮食小鼠体重增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fad6/8620071/a632f479cc69/ijms-22-12361-g001.jpg

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