Department of Metabolic Diseases, University Medical Center Utrecht, Utrecht, The Netherlands.
Department of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands.
J Inherit Metab Dis. 2022 Mar;45(2):353-365. doi: 10.1002/jimd.12450. Epub 2021 Nov 3.
Inborn errors of metabolism (IEMs) comprise a diverse group of individually rare monogenic disorders that affect metabolic pathways. Mutations lead to enzymatic deficiency or dysfunction, which results in intermediate metabolite accumulation or deficit leading to disease phenotypes. Currently, treatment options for many IEMs are insufficient. Rarity of individual IEMs hampers therapy development and phenotypic and genetic heterogeneity suggest beneficial effects of personalized approaches. Recently, cultures of patient-own liver-derived intrahepatic cholangiocyte organoids (ICOs) have been established. Since most metabolic genes are expressed in the liver, patient-derived ICOs represent exciting possibilities for in vitro modeling and personalized drug testing for IEMs. However, the exact application range of ICOs remains unclear. To address this, we examined which metabolic pathways can be studied with ICOs and what the potential and limitations of patient-derived ICOs are to model metabolic functions. We present functional assays in patient ICOs with defects in branched-chain amino acid metabolism (methylmalonic acidemia), copper metabolism (Wilson disease), and transporter defects (cystic fibrosis). We discuss the broad range of functional assays that can be applied to ICOs, but also address the limitations of these patient-specific cell models. In doing so, we aim to guide the selection of the appropriate cell model for studies of a specific disease or metabolic process.
先天性代谢缺陷(IEMs)是一组由基因突变引起的、影响代谢途径的罕见单基因疾病。这些突变导致酶的缺乏或功能障碍,从而导致中间代谢产物的积累或缺乏,进而导致疾病表型。目前,许多 IEM 的治疗选择都不足。个体 IEM 的罕见性阻碍了治疗方法的开发,表型和遗传异质性表明个性化方法可能具有有益效果。最近,已经建立了患者自身肝脏来源的肝内胆管细胞类器官(ICOs)培养体系。由于大多数代谢基因在肝脏中表达,因此患者来源的 ICO 为 IEM 的体外建模和个性化药物测试提供了令人兴奋的可能性。然而,ICO 的具体应用范围尚不清楚。为了解决这个问题,我们研究了 ICO 可以研究哪些代谢途径,以及患者来源的 ICO 在模拟代谢功能方面的潜力和局限性。我们在患有支链氨基酸代谢缺陷(甲基丙二酸血症)、铜代谢缺陷(威尔逊病)和转运体缺陷(囊性纤维化)的患者 ICO 中进行了功能检测。我们讨论了可以应用于 ICO 的广泛功能检测方法,但也解决了这些患者特异性细胞模型的局限性。这样做的目的是为特定疾病或代谢过程的研究选择合适的细胞模型提供指导。