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基质硬度通过Rho介导的细胞间黏附分子-1(ICAM-1)聚集对单核细胞与内皮细胞的黏附发挥双相调控作用。

Matrix stiffness exerts biphasic control over monocyte-endothelial adhesion via Rho-mediated ICAM-1 clustering.

作者信息

Scott Harry A, Quach Boi, Yang Xiao, Ardekani Soroush, Cabrera Andrea P, Wilson Randall, Messaoudi-Powers Ilhem, Ghosh Kaustabh

机构信息

Department of Bioengineering, University of California Riverside, 900 University Avenue, MSE 207, Riverside, CA 92521, USA.

出版信息

Integr Biol (Camb). 2016 Aug 8;8(8):869-78. doi: 10.1039/c6ib00084c. Epub 2016 Jul 22.

Abstract

Leukocyte-endothelial adhesion is a critical early step in chronic vascular inflammation associated with diabetes, emphysema, and aging. Importantly, these conditions are also marked by abnormal subendothelial matrix crosslinking (stiffness). Yet, whether and how abnormal matrix stiffness contributes to leukocyte-endothelial adhesion remains poorly understood. Using a co-culture of human monocytic cells and human microvascular endothelial cells (ECs) grown on matrices of tunable stiffness, we demonstrate that matrix stiffness exerts biphasic control over monocyte-EC adhesion, with both matrix softening and stiffening eliciting a two-fold increase in this adhesive interaction. This preferential endothelial adhesivity on softer and stiffer matrices was consistent with a significant increase in α-actinin-4-associated endothelial ICAM-1 clustering, a key determinant of monocyte-EC adhesion. Further, the enhanced ICAM-1 clustering on soft and stiff matrices correlated strongly with an increase in Rho activity and ROCK2 expression. Importantly, inhibition of Rho/ROCK activity blocked the effects of abnormal matrix stiffness on ICAM-1 clustering and monocyte-EC adhesion. Thus, these findings implicate matrix stiffness-dependent ICAM-1 clustering as an important regulator of vascular inflammation and provide the rationale for closely examining mechanotransduction pathways as new molecular targets for anti-inflammatory therapy.

摘要

白细胞与内皮细胞的黏附是糖尿病、肺气肿和衰老相关慢性血管炎症的关键早期步骤。重要的是,这些病症还具有内皮下基质交联异常(僵硬)的特征。然而,异常的基质硬度是否以及如何导致白细胞与内皮细胞的黏附仍知之甚少。通过在具有可调硬度的基质上培养人单核细胞和人微血管内皮细胞(ECs)的共培养体系,我们证明基质硬度对单核细胞与内皮细胞的黏附具有双相控制作用,基质软化和硬化均会使这种黏附相互作用增加两倍。在较软和较硬基质上这种优先的内皮黏附性与α-辅肌动蛋白-4相关的内皮细胞间黏附分子-1(ICAM-1)聚集的显著增加一致,ICAM-1是单核细胞与内皮细胞黏附的关键决定因素。此外,在软质和硬质基质上增强的ICAM-1聚集与Rho活性和ROCK2表达的增加密切相关。重要的是,抑制Rho/ROCK活性可阻断异常基质硬度对ICAM-1聚集和单核细胞与内皮细胞黏附的影响。因此,这些发现表明基质硬度依赖性ICAM-1聚集是血管炎症的重要调节因子,并为密切研究机械转导途径作为抗炎治疗的新分子靶点提供了理论依据。

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