Department of Otolaryngology, Department of Allergy, Guangzhou Key Laboratory of Otorhinolaryngology, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.
Department of Otorhinolaryngology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Nat Commun. 2024 Jan 2;15(1):143. doi: 10.1038/s41467-023-44488-1.
Extracellular matrix (ECM) assembly/disassembly is a critical regulator for airway epithelial development and remodeling. Airway organoid is widely used in respiratory research, yet there is limited study to indicate the roles and mechanisms of ECM organization in epithelial growth and differentiation by using in vitro organoid system. Moreover, most of current Matrigel-based airway organoids are in basal-out orientation where accessing the apical surface is challenging. We present a human apical-out airway organoid using a biochemically defined hybrid hydrogel system. During human nasal epithelial progenitor cells (hNEPCs) differentiation, the gel gradually degrade, leading to the organoid apical surfaces facing outward. The expression and activity of ECM-degrading enzymes, matrix metalloproteinases (MMP7, MMP9, MMP10 and MMP13) increases during organoid differentiation, where inhibition of MMPs significantly suppresses the normal ciliation, resulting in increased goblet cell proportion. Moreover, a decrease of MMPs is found in goblet cell hyperplastic epithelium in inflammatory mucosa. This system reveals essential roles of epithelial-derived MMPs on epithelial cell fate determination, and provides an applicable platform enabling further study for ECM in regulating airway development in health and diseases.
细胞外基质(ECM)的组装/拆卸是气道上皮细胞发育和重塑的关键调节剂。气道类器官广泛应用于呼吸研究中,但利用体外类器官系统,表明 ECM 组织在上皮细胞生长和分化中的作用和机制的研究有限。此外,目前大多数基于 Matrigel 的气道类器官呈基底向外的方向,难以接触到顶端表面。我们使用一种生化定义的混合水凝胶系统展示了一种人类顶端向外的气道类器官。在人鼻上皮祖细胞(hNEPC)分化过程中,凝胶逐渐降解,导致类器官的顶端表面向外。在类器官分化过程中,ECM 降解酶(MMP7、MMP9、MMP10 和 MMP13)的表达和活性增加,其中 MMPs 的抑制显著抑制了正常纤毛的形成,导致杯状细胞比例增加。此外,在炎症性黏膜的杯状细胞增生上皮中发现 MMPs 减少。该系统揭示了上皮细胞衍生的 MMPs 在细胞命运决定中的重要作用,并提供了一个适用的平台,使我们能够进一步研究 ECM 在调节健康和疾病状态下气道发育中的作用。