Gomel State Medical University, 5 Lange str, Gomel, BY-246000, Belarus.
Institute of Radiobiology of NAS of Belarus, 4 Fedyuninskogo str, Gomel, BY-246007, Belarus.
Cytoskeleton (Hoboken). 2023 May-Jun;80(5-6):123-132. doi: 10.1002/cm.21753. Epub 2023 Mar 23.
CD109 antigen on the endothelial cell surface plays an important role in vascular pathology. The aim of the work was to investigate the effect of the immobilization of CD109 antigen with specific antibodies on nanomechanical properties of human umbilical endothelial cells (HUVECs) using atomic force microscopy in quantitative nanomechanical property mapping mode (PeakForce QNM). Anti-CD109 antibodies induced significant stiffening of the cell surface Me(LQ; UQ): in 1.45(1.07;2.29) times with respect to control cells for fixed cells and in 4.9(3.6;5.9) times with respect to control cells for living cells, and changes in the spatial distribution of cell surface mechanical properties. The changes in the HUVEC's mechanical properties were accompanied by the activation of the TGF-/Smad2/3 signaling pathway and reorganization of the vimentin and actin cytoskeletal elements. Our findings show that blocking CD109 antigen using anti-CD109 antibodies leads in HUVECs to the processes similar to that occur after cell TGF-β-signaling activation. Therefore, we suggest that CD109 antigen may be involved in regulating the mechanical behavior of endothelial cells.
内皮细胞表面的 CD109 抗原在血管病理学中起着重要作用。本研究旨在利用原子力显微镜定量纳米力学图谱模式(PeakForce QNM)研究固定化 CD109 抗原及其特异性抗体对人脐静脉内皮细胞(HUVEC)纳米力学性能的影响。抗 CD109 抗体显著增加了细胞表面的刚性:与对照组相比,固定细胞增加了 1.45 倍(1.07-2.29),活细胞增加了 4.9 倍(3.6-5.9),同时改变了细胞表面力学性质的空间分布。HUVEC 力学性质的变化伴随着 TGF-/Smad2/3 信号通路的激活和波形蛋白及肌动蛋白细胞骨架的重组。我们的研究结果表明,用抗 CD109 抗体阻断 CD109 抗原会导致 HUVEC 中发生类似于 TGF-β 信号激活后发生的过程。因此,我们认为 CD109 抗原可能参与调节内皮细胞的力学行为。