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人肺类器官培养于含或不含 Matrigel 的藻酸盐中以建立发育和疾病模型。

Human Lung Organoid Culture in Alginate With and Without Matrigel to Model Development and Disease.

机构信息

Department of Biomedical Engineering, Gastroenterology, University of Michigan, Ann Arbor, Michigan, USA.

Department of Internal Medicine, Gastroenterology, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Tissue Eng Part A. 2022 Nov;28(21-22):893-906. doi: 10.1089/ten.TEA.2022.0054. Epub 2022 Oct 6.

Abstract

Human lung organoids (HLOs) are enabling the study of human lung development and disease by modeling native organ tissue structure, cellular composition, and cellular organization. In this report, we demonstrate that HLOs derived from human pluripotent stem cells cultured in alginate, a fully defined nonanimal product substrate, exhibit enhanced cellular differentiation compared with HLOs cultured in the commercially available Matrigel. More specifically, we observed an earlier onset and increase in the number of multiciliated cells, along with mucus producing MUC5AC goblet-like cells that were not observed in HLOs cultured in Matrigel. The epithelium in alginate-grown HLOs was organized in a pseudostratified epithelium with airway basal cells lining the basal lamina, but with the apical surface of cells on the exterior of the organoid. We further observed that HLOs cultured in Matrigel exhibited mesenchymal overgrowth that was not present in alginate cultures. The containment of the mesenchyme within HLOs in alginate enabled modeling of key features of idiopathic pulmonary fibrosis (IPF) by treatment with transforming growth factor β (TGFβ). TGFβ treatment resulted in morphological changes including an increase in mesenchymal growth, increased expression of IPF markers, and decreased numbers of alveolar-like cells. This culture system provides a model to study the interaction of the mesenchyme with the epithelium during lung development and diseased states such as IPF.

摘要

人肺类器官(HLOs)通过模拟天然器官组织结构、细胞组成和细胞组织,使人肺发育和疾病研究成为可能。在本报告中,我们证明了在藻酸盐(一种完全定义的非动物产品基质)中培养的源自人多能干细胞的 HLOs 与在商业上可获得的 Matrigel 中培养的 HLOs 相比,表现出增强的细胞分化。更具体地说,我们观察到多纤毛细胞的出现和数量增加更早,并且在 Matrigel 中培养的 HLOs 中未观察到产生粘蛋白 MUC5AC 的杯状细胞。藻酸盐培养的 HLOs 中的上皮组织以假复层上皮组织的形式排列,气道基底细胞排列在基底膜上,但细胞的顶表面位于类器官的外部。我们进一步观察到,在 Matrigel 中培养的 HLOs 表现出间质过度生长,而在藻酸盐培养中则没有。藻酸盐中 HLOs 内的间质被包含在内,使 TGFβ 处理能够模拟特发性肺纤维化(IPF)的关键特征。TGFβ 处理导致形态学变化,包括间质生长增加、IPF 标志物表达增加和肺泡样细胞数量减少。该培养系统提供了一个模型,用于研究肺发育和疾病状态(如 IPF)期间间质与上皮的相互作用。

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