Wang Zhe, Qu Yan-Ji, Cui Min
Department of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, Hubei Province, China.
Department of Otorhinolaryngology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, Hubei Province, China.
World J Stem Cells. 2023 May 26;15(5):354-368. doi: 10.4252/wjsc.v15.i5.354.
The mammalian intestinal epithelium constitutes the largest barrier against the external environment and makes flexible responses to various types of stimuli. Epithelial cells are fast-renewed to counteract constant damage and disrupted barrier function to maintain their integrity. The homeostatic repair and regeneration of the intestinal epithelium are governed by the Lgr5 intestinal stem cells (ISCs) located at the base of crypts, which fuel rapid renewal and give rise to the different epithelial cell types. Protracted biological and physicochemical stress may challenge epithelial integrity and the function of ISCs. The field of ISCs is thus of interest for complete mucosal healing, given its relevance to diseases of intestinal injury and inflammation such as inflammatory bowel diseases. Here, we review the current understanding of the signals and mechanisms that control homeostasis and regeneration of the intestinal epithelium. We focus on recent insights into the intrinsic and extrinsic elements involved in the process of intestinal homeostasis, injury, and repair, which fine-tune the balance between self-renewal and cell fate specification in ISCs. Deciphering the regulatory machinery that modulates stem cell fate would aid in the development of novel therapeutics that facilitate mucosal healing and restore epithelial barrier function.
哺乳动物的肠道上皮构成了抵御外部环境的最大屏障,并能对各种类型的刺激做出灵活反应。上皮细胞快速更新,以抵消持续的损伤和破坏的屏障功能,从而维持其完整性。肠道上皮的稳态修复和再生由位于隐窝底部的Lgr5肠道干细胞(ISC)控制,这些干细胞推动快速更新,并产生不同类型的上皮细胞。长期的生物和物理化学应激可能会挑战上皮的完整性和ISC的功能。鉴于ISC与肠道损伤和炎症性疾病(如炎症性肠病)相关,因此ISC领域对于实现完全的黏膜愈合具有重要意义。在这里,我们综述了目前对控制肠道上皮稳态和再生的信号及机制的理解。我们重点关注肠道稳态、损伤和修复过程中涉及的内在和外在因素的最新见解,这些因素微调了ISC自我更新和细胞命运决定之间的平衡。破译调节干细胞命运的调控机制将有助于开发促进黏膜愈合和恢复上皮屏障功能的新型疗法。