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周期性拉伸的 ACL 成纤维细胞从球体中迁移出来后,会调整其细胞骨架和与韧带相关的表达谱。

Cyclically stretched ACL fibroblasts emigrating from spheroids adapt their cytoskeleton and ligament-related expression profile.

机构信息

Institute of Anatomy and Cell Biology, Paracelsus Medical University, Prof.-Ernst-Nathan Str. 1, 90419, Nuremberg and Salzburg, Nuremberg, Germany.

Department of Biosciences, Paris Lodron University Salzburg, Hellbrunnerstr. 34, 5020, Salzburg, Austria.

出版信息

Cell Tissue Res. 2021 Jun;384(3):675-690. doi: 10.1007/s00441-021-03416-9. Epub 2021 Apr 9.

Abstract

Mechanical stress of ligaments varies; hence, ligament fibroblasts must adapt their expression profile to novel mechanomilieus to ensure tissue resilience. Activation of the mechanoreceptors leads to a specific signal transduction, the so-called mechanotransduction. However, with regard to their natural three-dimensional (3D) microenvironment cell reaction to mechanical stimuli during emigrating from a 3D spheroid culture is still unclear. This study aims to provide a deeper understanding of the reaction profile of anterior cruciate ligament (ACL)-derived fibroblasts exposed to cyclic uniaxial strain in two-dimensional (2D) monolayer culture and during emigration from 3D spheroids with respect to cell survival, cell and cytoskeletal orientation, distribution, and expression profile. Monolayers and spheroids were cultured in crosslinked polydimethyl siloxane (PDMS) elastomeric chambers and uniaxially stretched (14% at 0.3 Hz) for 48 h. Cell vitality, their distribution, nuclear shape, stress fiber orientation, focal adhesions, proliferation, expression of ECM components such as sulfated glycosaminoglycans, collagen type I, decorin, tenascin C and cell-cell communication-related gap junctional connexin (CXN) 43, tendon-related markers Mohawk and tenomodulin (myodulin) were analyzed. In contrast to unstretched cells, stretched fibroblasts showed elongation of stress fibers, cell and cytoskeletal alignment perpendicular to strain direction, less rounded cell nuclei, increased numbers of focal adhesions, proliferation, amplified CXN43, and main ECM component expression in both cultures. The applied cyclic stretch protocol evoked an anabolic response and enhanced tendon-related marker expression in ACL-derived fibroblasts emigrating from 3D spheroids and seems also promising to support in future tissue formation in ACL scaffolds seeded in vitro with spheroids.

摘要

韧带的机械应力各不相同;因此,韧带成纤维细胞必须调整其表达谱以适应新的力学环境,以确保组织的弹性。机械感受器的激活导致特定的信号转导,即所谓的力学转导。然而,关于它们的天然三维 (3D) 微环境,细胞在从 3D 球体培养物中迁移时对机械刺激的反应仍然不清楚。本研究旨在更深入地了解前交叉韧带 (ACL) 衍生的成纤维细胞在二维 (2D) 单层培养物中暴露于循环单轴应变和从 3D 球体中迁移时的反应谱,以了解细胞活力、细胞和细胞骨架的方向、分布和表达谱。单层和球体在交联聚二甲基硅氧烷 (PDMS) 弹性体室中培养,并在 0.3 Hz 下以 14%的应变率进行单轴拉伸 48 小时。分析细胞活力、分布、核形状、应力纤维取向、黏附斑、增殖、细胞外基质成分(如硫酸化糖胺聚糖、I 型胶原、饰胶蛋白聚糖、腱生蛋白 C 和细胞间通讯相关的缝隙连接蛋白 connexin (CXN) 43)的表达、肌腱相关标志物 Mohawk 和 tenomodulin (myodulin)。与未拉伸的细胞相比,拉伸的成纤维细胞表现出应力纤维、细胞和细胞骨架沿应变方向的定向伸长、更圆的细胞核、更多的黏附斑、增殖、扩增的 CXN43 和两种培养物中主要细胞外基质成分的表达。应用的循环拉伸方案引起 ACL 衍生的成纤维细胞的合成代谢反应,并增强了从 3D 球体中迁移的肌腱相关标志物的表达,并且在未来在体外用球体接种 ACL 支架中支持组织形成方面也很有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f76e/8211585/cec28c7ef443/441_2021_3416_Fig1_HTML.jpg

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