Meng Fanlu, Shen Congcong, Yang Li, Ni Chao, Huang Jianyong, Lin Kaijun, Cao Zanxia, Xu Shicai, Cui Wanling, Wang Xiaoxin, Zhou Bailing, Xiong Chunyang, Wang Jihua, Zhao Bing
Shandong Key Laboratory of Biophysics, Institute of Biophysics, Dezhou University, Dezhou, 253023, China.
Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing, 100871, China.
Cell Regen. 2022 Nov 2;11(1):39. doi: 10.1186/s13619-022-00137-4.
Intestinal organoids, derived from intestinal stem cell self-organization, recapitulate the tissue structures and behaviors of the intestinal epithelium, which hold great potential for the study of developmental biology, disease modeling, and regenerative medicine. The intestinal epithelium is exposed to dynamic mechanical forces which exert profound effects on gut development. However, the conventional intestinal organoid culture system neglects the key role of mechanical microenvironments but relies solely on biological factors. Here, we show that adding cyclic stretch to intestinal organoid cultures remarkably up-regulates the signature gene expression and proliferation of intestinal stem cells. Furthermore, mechanical stretching stimulates the expansion of SOX9 progenitors by activating the Wnt/β-Catenin signaling. These data demonstrate that the incorporation of mechanical stretch boosts the stemness of intestinal stem cells, thus benefiting organoid growth. Our findings have provided a way to optimize an organoid generation system through understanding cross-talk between biological and mechanical factors, paving the way for the application of mechanical forces in organoid-based models.
肠道类器官由肠道干细胞自我组织形成,重现了肠道上皮的组织结构和行为,在发育生物学、疾病建模和再生医学研究方面具有巨大潜力。肠道上皮暴露于动态机械力之下,这些力对肠道发育产生深远影响。然而,传统的肠道类器官培养系统忽视了机械微环境的关键作用,仅依赖生物因素。在此,我们表明,对肠道类器官培养施加周期性拉伸可显著上调肠道干细胞的特征基因表达和增殖。此外,机械拉伸通过激活Wnt/β-连环蛋白信号通路刺激SOX9祖细胞的扩增。这些数据表明,引入机械拉伸可增强肠道干细胞的干性,从而有利于类器官生长。我们的研究结果为通过理解生物因素和机械因素之间的相互作用来优化类器官生成系统提供了一种方法,为在基于类器官的模型中应用机械力铺平了道路。