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Articular chondrocytes derived from distinct tissue zones differentially respond to in vitro oscillatory tensile loading.

机译:来自不同组织区域的关节软骨细胞对体外振荡拉伸负荷有不同的反应。

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OBJECTIVE: The cell morphology, gene expression, and matrix synthesis of articular chondrocytes are known to vary with depth from the tissue surface. The objective of this study was to investigate if chondrocytes from different zones respond to in vitro oscillatory tensile loading in distinct ways and whether tensile strain, which is most prevalent near the articular surface, would preferentially stimulate superficial zone chondrocytes. DESIGN: Chondrocytes were separately isolated from the superficial, middle, and deep zones of articular cartilage and seeded into three-dimensional fibrin hydrogel constructs. An intermittent protocol of oscillatory tensile loading was applied for 3 days, and the effects on extracellular matrix (ECM) synthesis were assessed by measuring the incorporation of radiolabed precursors, size exclusion gel chromatography, and western blotting. RESULTS: Tensile loading was found to be a potent stimulus for proteoglycan synthesis only in superficial zone chondrocytes. Although overall biosynthesis rates by deep zone chondrocytes were unaffected by tensile loading, the molecular characteristics of proteins and proteoglycans released to the culture medium were significantly altered so as to resemble those of superficial zone chondrocytes. CONCLUSIONS: Oscillatory tensile loading differentially affected subpopulations of articular chondrocytes in three-dimensional fibrin hydrogel constructs. Cells isolated from deeper regions of the tissue developed some characteristics of superficial zone chondrocytes after exposure to tensile loading, which may indicate an adaptive response to the new mechanical environment. Understanding how exogenous mechanical stimuli can differentially influence chondrocytes from distinct tissue zones will yield important insights into mechanobiological processes involved in cartilage tissue development, maintenance, disease, and repair.
机译:目的:已知关节软骨细胞的细胞形态,基因表达和基质合成会随着距组织表面深度的变化而变化。这项研究的目的是研究来自不同区域的软骨细胞是否以不同的方式响应体外振荡拉伸负荷,以及在关节表面附近最普遍的拉伸应变是否会优先刺激浅表层的软骨细胞。设计:将软骨细胞分别从关节软骨的浅表,中部和深部区域分离出来,并接种到三维纤维蛋白水凝胶结构中。间歇性施加振荡性拉伸载荷3天,并通过测量放射标记前体的掺入量,尺寸排阻凝胶色谱法和Western印迹法评估对细胞外基质(ECM)合成的影响。结果发现,仅在表层软骨细胞中,拉伸负荷是蛋白聚糖合成的有效刺激。尽管深区软骨细胞的总体生物合成速率不受拉伸载荷的影响,但释放到培养基中的蛋白质和蛋白聚糖的分子特性却发生了显着变化,类似于表层区软骨细胞。结论:振动拉伸负荷差异影响三维纤维蛋白水凝胶构造中的关节软骨细胞亚群。从组织的较深区域分离的细胞在暴露于拉伸负荷后发展出浅层软骨细胞的某些特征,这可能表明对新的机械环境具有适应性反应。了解外源性机械刺激如何能够不同地影响来自不同组织区域的软骨细胞,将对涉及软骨组织发育,维持,疾病和修复的力学生物学过程产生重要的见解。

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