Interaction of integrin αvβ3 and fibronectin under fluid shear forces: implications for tumor cell adhesion and migration
作者:Paimin Zhuo, Quhuan Li, Bishan Yang, Na Li, Zhiqing Luo, Fengxia Zhang · 发表于:Frontiers in Cell and Developmental Biology · 年份:2025 · DOI:10.3389/fcell.2025.1512672 · 被引用次数:5 · 研究领域:Cell Adhesion Molecules Research、Cellular Mechanics and Interactions、Blood properties and coagulation
The interaction between integrin α v β 3 and fibronectin enables tumor cell adherence to endothelial layers under diverse hydrodynamic blood flow conditions, particularly in low shear stress regions. Understanding the mechanical binding characteristics between integrin α v β 3 and fibronectin under different hydrodynamic environments can provide insights into tumor cell invasion and proliferation. Here, the adhesive behavior of fibronectin-functionalized microspheres on integrin α v β 3 -coated substrates under various wall fluid shear forces (0.1–0.7 dyn/cm 2 ) was assessed using a parallel plate flow chamber system. The bond lifetimes of integrin α v β 3 -fibronectin initially increased and then decreased, indicating transition from a “catch bond” to “slip bond.” Upon perfusion of fibronectin-coated microspheres into flow chambers with high-density integrin α v β 3 coating, the rolling velocity of the microspheres increased with increasing shear force. Additionally, the mean stop time and stop frequency exhibited a force-dependent biphasic pattern, initially increasing and then decreasing with shear force, demonstrating a nuanced response to mechanical forces. Thus, the integrin α v β 3 –fibronectin interaction displays a “catch bond” property, influencing cell distribution in varying fluid shear forces by promoting optimal adhesion in specific shear sites. These insights enhance our understanding of tumor cell adhesion and migration in hydrodynamic environments and may aid...