早期软骨细胞扩散与炎症反应的相互作用。

IF 1.6 4区 生物学 Q4 CELL BIOLOGY
Cytoskeleton Pub Date : 2025-03-05 DOI:10.1002/cm.22011
Tristan Isaiah Pepper, Saitheja Adi Pucha, Lauren Foster, Alan Y. Liu, Meghan Alexander, Jay Milan Patel
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引用次数: 0

摘要

关节损伤越来越常见,并在软骨细胞外基质中引发退行性级联。软骨细胞在这一过程的初始阶段经历细胞内和细胞外的变化,包括炎症激活和形态变化,启动分解代谢反馈循环,发展为骨关节炎(OA)。然而,这种早期形态扩散与对未来炎症事件的易感性之间的联系尚不清楚。因此,本研究的目的是探讨细胞扩散对早期炎症激活的影响。首先,我们用对照或退行性培养基处理牛软骨外植体2周,建立早期软骨细胞扩散和软骨细胞周围细胞外基质丢失。接下来,我们在不同硬度的明胶水凝胶上植入软骨细胞或将其包封,以允许不同程度的扩散,然后进行短时间(2小时)的炎症刺激,以测量炎症激活(NF-κB)。我们在2D中发现,更硬的底物导致更大的软骨细胞扩散和NF-κB核定位;然而,在3D中,这种趋势是相反的,在最软的水凝胶中,细胞的扩散和激活最大。最后,我们研究了透明质酸水凝胶掺入这些环境如何影响这种扩散-炎症激活关系,结果表明,透明质酸的增加减少了这两个方面。总之,软骨细胞的扩散,特别是在3D中,与基质硬度降低有关,这可以使软骨细胞更容易受到炎症的影响。因此,未来的治疗方法不仅要解决关节炎症,还要恢复软骨细胞形态和微环境特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Interplay Between Early Chondrocyte Spreading and Inflammatory Responsivity

Joint injuries are increasingly common and initiate a degenerative cascade in the cartilage extracellular matrix. Chondrocytes experience both intra- and extra-cellular changes during the initial phases of this process, including inflammatory activation and morphological change, initiating a catabolic feedback cycle that progresses toward osteoarthritis (OA). However, the link between this early morphological spreading and susceptibility to future inflammatory events is unclear. Thus, the objective of this study was to explore the implications of cellular spreading on early inflammatory activation. First, we treated bovine cartilage explants with control or degenerative media for 2 weeks and established early chondrocyte spreading and extracellular matrix loss around chondrocytes. Next, we either seeded chondrocytes on or encapsulated them within gelatin hydrogels of different stiffnesses to allow different degrees of spreading, followed by a short (2 h) inflammatory stimulus to measure inflammatory activation (NF-κB). We found in 2D that stiffer substrates led to greater chondrocyte spreading and NF-κB nuclear localization; however, in 3D, this trend was reversed, with the greatest spreading and activation in cells in the softest hydrogels. Finally, we investigated how hyaluronic acid hydrogel incorporation into these environments could impact this spreading-inflammtory activation relationship, showing that augmentation with HA reduced both facets. In conclusion, chondrocyte spreading, especially in 3D, is linked with reduced matrix stiffness, and this can make chondrocytes more susceptible to inflammation. Thus, future therapies should seek to address not only the inflammation in the joint but also to restore chondrocyte morphology and microenvironmental properties.

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来源期刊
Cytoskeleton
Cytoskeleton CELL BIOLOGY-
CiteScore
5.50
自引率
3.40%
发文量
24
审稿时长
6-12 weeks
期刊介绍: Cytoskeleton focuses on all aspects of cytoskeletal research in healthy and diseased states, spanning genetic and cell biological observations, biochemical, biophysical and structural studies, mathematical modeling and theory. This includes, but is certainly not limited to, classic polymer systems of eukaryotic cells and their structural sites of attachment on membranes and organelles, as well as the bacterial cytoskeleton, the nucleoskeleton, and uncoventional polymer systems with structural/organizational roles. Cytoskeleton is published in 12 issues annually, and special issues will be dedicated to especially-active or newly-emerging areas of cytoskeletal research.
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