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血管平滑肌细胞种植组织等效物的动态双轴加载。

Dynamic biaxial loading of vascular smooth muscle cell seeded tissue equivalents.

机构信息

Institute for Continuum and Material Mechanics, Hamburg University of Technology, Hamburg, Germany; Institute of Material Systems Modeling, Helmholtz-Zentrum Hereon, Geesthacht, Germany; Department of Biomedical Engineering, Yale University, New Haven, CT, USA.

Department of Biomedical Engineering, Yale University, New Haven, CT, USA.

出版信息

J Mech Behav Biomed Mater. 2024 Sep;157:106639. doi: 10.1016/j.jmbbm.2024.106639. Epub 2024 Jun 22.

Abstract

An intricate reciprocal relationship exists between adherent synthetic cells and their extracellular matrix (ECM). These cells deposit, organize, and degrade the ECM, which in turn influences cell phenotype via responses that include sensitivity to changes in the mechanical state that arises from changes in external loading. Collagen-based tissue equivalents are commonly used as simple but revealing model systems to study cell-matrix interactions. Nevertheless, few quantitative studies report changes in the forces that the cells establish and maintain in such gels under dynamic loading. Moreover, most prior studies have been limited to uniaxial experiments despite many soft tissues, including arteries, experiencing multiaxial loading in vivo. To begin to close this gap, we use a custom biaxial bioreactor to subject collagen gels seeded with primary aortic smooth muscle cells to different biaxial loading conditions. These conditions include cyclic loading with different amplitudes as well as different mechanical constraints at the boundaries of a cruciform sample. Irrespective of loading amplitude and boundary condition, similar mean steady-state biaxial forces emerged across all tests. Additionally, stiffness-force relationships assessed via intermittent equibiaxial force-extension tests showed remarkable similarity for ranges of forces to which the cells adapted during periods of cyclic loading. Taken together, these findings are consistent with a load-mediated homeostatic response by vascular smooth muscle cells.

摘要

黏附合成细胞与其细胞外基质 (ECM) 之间存在着复杂的相互关系。这些细胞沉积、组织化和降解 ECM,反过来又通过响应影响细胞表型,包括对外部加载引起的机械状态变化的敏感性。基于胶原蛋白的组织等效物通常被用作研究细胞-基质相互作用的简单但有启发性的模型系统。然而,很少有定量研究报告在动态加载下,细胞在这些凝胶中建立和维持的力的变化。此外,尽管许多软组织,包括动脉,在体内经历多轴加载,但大多数先前的研究都仅限于单轴实验。为了开始缩小这一差距,我们使用定制的双轴生物反应器使原代主动脉平滑肌细胞接种的胶原蛋白凝胶经受不同的双轴加载条件。这些条件包括不同幅度的循环加载以及十字形样品边界的不同力学约束。无论加载幅度和边界条件如何,所有测试中都出现了相似的稳态双轴力。此外,通过间歇等轴力-延伸测试评估的刚度-力关系对于细胞在循环加载期间适应的力范围表现出惊人的相似性。总之,这些发现与血管平滑肌细胞的负载介导的自稳态反应一致。

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