Chi Yinxiu, Chen Yu, Jiang Wang, Huang Wenjie, Ouyang Mingxing, Liu Lei, Pan Yan, Li Jingjing, Qu Xiangping, Liu Huijun, Liu Chi, Deng Linhong, Qin Xiaoqun, Xiang Yang
School of Basic Medicine, Central South University, Changsha, China.
Changzhou Key Laboratory of Respiratory Medical Engineering, Institute of Biomedical Engineering and Health Sciences, Changzhou, China.
Front Cell Dev Biol. 2022 Mar 3;10:845440. doi: 10.3389/fcell.2022.845440. eCollection 2022.
The interaction between extracellular matrix (ECM) and epithelial cells plays a key role in lung development. Our studies found that mice with conditional integrin 4 (ITGB4) knockout presented lung dysplasia and increased stiffness of lung tissues. In accordance with our previous studies regarding the functions of ITGB4 in bronchial epithelial cells (BECs), we hypothesize that the decreased ITGB4 expression during embryonic stage leads to abnormal ECM remodeling and increased tissue stiffness, thus impairing BECs motility and compromising lung development. In this study, we examined lung tissue stiffness in normal and ITGB4 deficiency mice using Atomic Force Microscopy (AFM), and demonstrated that ITGB4 deficiency resulted in increased lung tissue stiffness. The examination of ECM components collagen, elastin, and lysyl oxidase (LOX) family showed that the expression of type VI collagen, elastin and LOXL4 were significantly elevated in the ITGB4-deficiency mice, compared with those in normal groups. Airway epithelial cell migration and proliferation capacities on normal and stiff substrates were evaluated through video-microscopy and flow cytometry. The morphology of the cytoskeleton was detected by laser confocal microscopy, and RhoA activities were determined by fluorescence resonance energy transfer (FRET) microscopy. The results showed that migration and proliferation of ITGB4 deficiency cells were noticeably inhibited, along decreased cytoskeleton stabilization, and hampered RhoA activity, especially for cells cultured on the stiff substrate. These results suggest that decreased ITGB4 expression results in increased lung tissue stiffness and impairs the adaptation of bronchial epithelial cells to substrate stiffness, which may be related to the occurrence of broncho pulmonary dysplasia.
细胞外基质(ECM)与上皮细胞之间的相互作用在肺发育中起着关键作用。我们的研究发现,条件性整合素4(ITGB4)基因敲除的小鼠出现肺发育异常,肺组织硬度增加。根据我们之前关于ITGB4在支气管上皮细胞(BECs)中功能的研究,我们推测胚胎期ITGB4表达降低会导致ECM重塑异常和组织硬度增加,从而损害BECs的运动能力并影响肺发育。在本研究中,我们使用原子力显微镜(AFM)检测了正常小鼠和ITGB4缺陷小鼠的肺组织硬度,结果表明ITGB4缺陷导致肺组织硬度增加。对ECM成分胶原蛋白、弹性蛋白和赖氨酰氧化酶(LOX)家族的检测显示,与正常组相比,ITGB4缺陷小鼠中VI型胶原蛋白、弹性蛋白和LOXL4的表达显著升高。通过视频显微镜和流式细胞术评估气道上皮细胞在正常和坚硬底物上的迁移和增殖能力。用激光共聚焦显微镜检测细胞骨架的形态,用荧光共振能量转移(FRET)显微镜测定RhoA活性。结果显示,ITGB4缺陷细胞的迁移和增殖明显受到抑制,同时细胞骨架稳定性下降,RhoA活性受阻,尤其是在坚硬底物上培养的细胞。这些结果表明,ITGB4表达降低导致肺组织硬度增加,并损害支气管上皮细胞对底物硬度的适应性,这可能与支气管肺发育不良的发生有关。