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锂对双相情感障碍患者来源的星形胶质细胞代谢功能障碍的不同影响。

Differential effects of lithium on metabolic dysfunctions in astrocytes derived from bipolar disorder patients.

作者信息

Baek Gyu Hyeon, Kim Dayeon, Son Geurim, Do Hyunsu, Yeon Gyu-Bum, Lee Mahn Jae, Ji Moongi, Son Ji-Hoon, Ju Mingyu, Ahn Insook, Kang Chanhee S, Lee Haeun, Choi Sungwoo, Suh Jae Myoung, Seo Jinsoo, Gage Fred H, Paik Man-Jeong, Park YongKeun, Kim Dae-Sung, Han Jinju

机构信息

Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34051, Korea.

Department of Biotechnology, Korea University, Seoul, 02841, Korea.

出版信息

Mol Psychiatry. 2025 Aug 22. doi: 10.1038/s41380-025-03176-w.

Abstract

Metabolic alterations have been observed in the brains of patients with bipolar disorder (BD), a neuropsychiatric disorder characterized by alternating episodes of mania and depression. However, the specific contributions of glial cells to these metabolic changes remain largely unknown. Here, we investigate the metabolic characteristics of induced astrocytes (iAstrocytes) derived from induced pluripotent stem cells of BD patients-classified by lithium responsiveness-and healthy controls. Transcriptomic analyses revealed dysregulated expression of genes associated with metabolic diseases in BD iAstrocytes. Compared to control iAstrocytes, BD iAstrocytes showed decreased mitochondrial respiration, increased glycolysis, and elevated lactate secretion, indicating impaired mitochondrial function. These defects were further supported by downregulation of oxidative phosphorylation complex proteins and decreased reactive oxygen species levels. Notably, BD iAstrocytes showed substantial lipid droplet (LD) accumulation, potentially as a consequence of disrupted metabolic homeostasis. Lithium treatment reduced LD levels in lithium-responsive (Li-R) iAstrocytes but failed to restore mitochondrial respiration or normalize lactate secretion. In co-culture with human neurons, lithium-nonresponsive (Li-NR) iAstrocytes exhibited enhanced uptake of neuron-derived lipids and selectively increased neuronal excitability. Metabolomic profiling revealed distinct metabolite signatures between Li-R and Li-NR iAstrocytes, suggesting lithium responsiveness as a key axis of metabolic heterogeneity. Together, our findings identify astrocyte-specific metabolic dysfunction as a hallmark of BD and reveal divergent roles of Li-R and Li-NR iAstrocytes in modulating neuronal function. LD accumulation in Li-NR iAstrocytes may serve as a functional readout for drug screening to identify alternative treatments for patients unresponsive to lithium.

摘要

双相情感障碍(BD)是一种以躁狂和抑郁交替发作为特征的神经精神疾病,在BD患者的大脑中已观察到代谢改变。然而,胶质细胞对这些代谢变化的具体作用仍 largely 未知。在这里,我们研究了源自 BD 患者诱导多能干细胞(根据锂反应性分类)和健康对照的诱导星形胶质细胞(iAstrocytes)的代谢特征。转录组分析揭示了 BD iAstrocytes 中与代谢疾病相关基因的表达失调。与对照 iAstrocytes 相比,BD iAstrocytes 显示线粒体呼吸减少、糖酵解增加和乳酸分泌升高,表明线粒体功能受损。氧化磷酸化复合蛋白的下调和活性氧水平的降低进一步支持了这些缺陷。值得注意的是,BD iAstrocytes 显示出大量脂滴(LD)积累,这可能是代谢稳态破坏的结果。锂治疗降低了锂反应性(Li-R)iAstrocytes 中的 LD 水平,但未能恢复线粒体呼吸或使乳酸分泌正常化。在与人类神经元共培养时,锂无反应性(Li-NR)iAstrocytes 表现出对神经元衍生脂质的摄取增强,并选择性地增加了神经元兴奋性。代谢组分析揭示了 Li-R 和 Li-NR iAstrocytes 之间不同的代谢物特征,表明锂反应性是代谢异质性的关键轴。总之,我们的研究结果确定星形胶质细胞特异性代谢功能障碍是 BD 的一个标志,并揭示了 Li-R 和 Li-NR iAstrocytes 在调节神经元功能方面的不同作用。Li-NR iAstrocytes 中的 LD 积累可能作为药物筛选的功能读数,以识别对锂无反应患者的替代治疗方法。

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