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Development of a Human Intestinal Organoid Model for In Vitro Studies on Gut Inflammation and Fibrosis

机译:对口腔炎症和纤维化体外研究的人肠有机体模型的发展

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Inflammatory Bowel Diseases (IBDs) are characterized by chronic intestinal inflammation and fibrosis, the latter being the predominant denominator for long-term complications. Epithelial and mesenchymal 2D cultures are highly utilized in vitro models for the preclinical evaluation of anti-inflammatory and antifibrotic therapies. More recently, human intestinal organoids (HIOs), a new 3D in vitro model derived from pluripotent stem cells, have the advantage to closely resemble the architecture of the intestinal mucosa. However, the appropriate timing for the study of inflammatory and fibrotic responses, during HIO development, has not been adequately investigated. We developed HIOs from the human embryonic stem cell line, H1, and examined the expression of mesenchymal markers during their maturation process. We also investigated the effect of inflammatory stimuli on the expression of fibrotic and immunological mediators. Serial evaluation of the expression of mesenchymal and extracellular matrix (ECM) markers revealed that HIOs have an adequately developed mesenchymal component, which gradually declines through culture passages. Specifically, CD90, collagen type I, collagen type III, and fibronectin were highly expressed in early passages but gradually diminished in late passages. The proinflammatory cytokines IL-1 α and TNF- α induced the mRNA expression of fibronectin, collagen types I and III, tissue factor (TF), and alpha-smooth muscle actin ( α -SMA) primarily in early passages. Similarly, HIOs elicited strong mRNA and protein mesenchymal (CXCL10) and epithelial (CXCL1, CCL2, CXCL8, and CCL20) chemokine responses in early but not late passages. In contrast, the epithelial tight junction components, CLDN1 and JAMA, responded to inflammatory stimulation independently of the culture passage. Our findings indicate that this HIO model contains a functional mesenchymal component, during early passages, and underline the significance of the mesenchymal cells’ fitness in inflammatory and fibrotic responses. Therefore, we propose that this model is suitable for the study of epithelial-mesenchymal interactions in early passages when the mesenchymal component is active.
机译:炎症性肠病(IBD)的特征在于慢性肠炎症和纤维化,后者是长期并发症的主要分母。上皮和间充质2D培养物高度利用了对抗炎和抗纤维化疗法的临床前评价的体外模型。最近,人肠有机体(HIOS),衍生自多能干细胞的新型3D体外模型,具有与肠粘膜的结构密切相关的优点。然而,在HIO发育期间,炎症和纤维化反应研究的适当时间尚未得到充分调查。我们从人胚胎干细胞系,H1中开发了HIOS,并在其成熟过程中检测了间充质标记的表达。我们还研究了炎症刺激对纤维化和免疫介质表达的影响。间充质和细胞外基质(ECM)标记表达的连续评价显示,HIOS具有充分发育的间充质组分,其逐渐通过培养通道下降。具体而言,CD90,胶原蛋白I型,III型和纤连蛋白在早期通道中高度表达,但晚期通道逐渐减少。促炎细胞因子IL-1α和TNF-α诱导主要在早期通道中的纤连蛋白,胶原型I和III,组织因子(TF)和α-平滑肌肌动蛋白(α-Sma)的mRNA表达。类似地,HIOS在早期但不是晚期通道中引发了强烈的mRNA和蛋白质间充质(CXCL10)和上皮(CXCL1,CCL2,CXCL8和CCL20)趋化因子。相比之下,上皮紧密接线组分,CLDN1和JAMA,与培养通道的炎症刺激作出反应。我们的研究结果表明,该HIO模型在早期通道期间含有功能性间充质成分,并强调间充质细胞对炎症和纤维化反应中的性能的重要性。因此,我们提出该模型适用于当间充质成分活性时早期通道的上皮间密闭相互作用。

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