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双轴应变对半月板内部和外部区域细胞的影响。

Biaxial strain effects on cells from the inner and outer regions of the meniscus.

作者信息

Upton Maureen L, Hennerbichler Alfred, Fermor Beverly, Guilak Farshid, Weinberg J Brice, Setton Lori A

机构信息

Department of Biomedical Engineering, Duke University, Durham, North Carolina 27708, USA.

出版信息

Connect Tissue Res. 2006;47(4):207-14. doi: 10.1080/03008200600846663.

Abstract

During knee joint loading, the fibrocartilaginous menisci experience significant spatial variations in mechanical stimuli. Meniscus cells also exhibit significant variations in biosynthesis and gene expression depending on their location within the tissue. These metabolic patterns are consistent with a more chondrocytic phenotype for cells located within the avascular inner two-thirds compared with a more fibroblastic phenotype for cells within the vascularized outer periphery. The spatial distribution of cell biosynthesis and gene expression patterns within the meniscus suggest that cells may exhibit intrinsically different responses to mechanical stimuli. The objective of our study was to test for intrinsic differences in the responsiveness of these meniscus cell populations to an equivalent mechanical stimulus. Cellular biosynthesis and gene expression for extracellular matrix proteins in isolated inner and outer meniscus cells in monolayer were quantified following cyclic biaxial stretch. The results demonstrate that inner and outer meniscus cells exhibit significant differences in matrix biosynthesis and gene expression regardless of stretching condition. Both inner and outer meniscus cells responded to stretch with increased nitric oxide production and total protein synthesis. The results suggest that inner and outer meniscus cells may respond similarly to biaxial stretch in vitro with measures of biosynthesis and gene expression.

摘要

在膝关节负荷过程中,纤维软骨半月板会经历机械刺激的显著空间变化。半月板细胞的生物合成和基因表达也会因其在组织内的位置不同而表现出显著差异。与血管化外周三分之一区域内具有更多成纤维细胞表型的细胞相比,无血管内三分之二区域内的细胞具有更类似软骨细胞的表型,这些代谢模式与之相符。半月板内细胞生物合成和基因表达模式的空间分布表明,细胞对机械刺激可能表现出内在的不同反应。我们研究的目的是测试这些半月板细胞群体对等效机械刺激的反应性是否存在内在差异。在循环双轴拉伸后,对单层分离的内侧和外侧半月板细胞中细胞外基质蛋白的细胞生物合成和基因表达进行了定量分析。结果表明,无论拉伸条件如何,内侧和外侧半月板细胞在基质生物合成和基因表达方面均表现出显著差异。内侧和外侧半月板细胞对拉伸的反应均表现为一氧化氮产生量增加和总蛋白合成增加。结果表明,内侧和外侧半月板细胞在体外对双轴拉伸的生物合成和基因表达反应可能相似。

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