Bipolar disorder (BD) is increasingly recognized as a disease with both mitochondrial dysfunction and heightened inflammatory reactivity, yet contribution to neuronal activity remains unclear. To address these gaps, this study utilizes iPSC-derived cerebral organoids (COs) from BD patients and healthy controls to model disease-specific metabolic and inflammatory dysfunction in a more physiologically relevant system. BD COs exhibited mitochondrial impairment, dysregulated metabolic function, and increased nod-leucine rich repeat and pyrin domain containing protein 3 (NLRP3) inflammasome activation sensitivity. Treatment with MCC950, a selective NLRP3 inhibitor, effectively rescued mitochondrial function and reduced inflammatory activation in both BD and control COs. The effect of a Bioactive Flavonoid Extract (BFE), a potential therapeutic, was also explored and yielded a partial rescue of inflammasome activation. These findings highlight a mitochondria-inflammasome axis in BD pathophysiology and establish a novel platform for studying BD-associated cellular mechanisms, ultimately bridging the gap between molecular dysfunction and therapeutic development.
iPSC-derived cerebral organoids reveal mitochondrial, inflammatory and neuronal vulnerabilities in bipolar disorder.
iPSC衍生的脑类器官揭示了双相情感障碍中线粒体、炎症和神经元的脆弱性
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作者:El Soufi El Sabbagh Dana, Kolinski Machado Alencar, Pappis Lauren, Leigh Beroncal Erika, Ji Delphine, Nader George, Ravi Chander Prathyusha, Choi Jaehyoung, Duong Angela, Jeong Hyunjin, Panizzutti Bruna, Bortolasci Chiara Cristina, Szatmari Andrea, Carlen Peter, Hahn Margaret, Attisano Liliana, Berk Michael, Walder Ken, Andreazza Ana Cristina
| 期刊: | Translational Psychiatry | 影响因子: | 6.200 |
| 时间: | 2025 | 起止号: | 2025 Aug 25; 15(1):315 |
| doi: | 10.1038/s41398-025-03529-7 | 研究方向: | 神经科学 |
| 疾病类型: | 神经炎症 | ||
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