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在未加载和加载琼脂糖中培养的软骨细胞亚群的反应。

Response of chondrocyte subpopulations cultured within unloaded and loaded agarose.

作者信息

Lee D A, Noguchi T, Knight M M, O'Donnell L, Bentley G, Bader D L

机构信息

IRC in Biomedical Materials, Institute of Orthopaedics, University College London Medical School, Stanmore, Middlesex, United Kingdom.

出版信息

J Orthop Res. 1998 Nov;16(6):726-33. doi: 10.1002/jor.1100160615.

Abstract

Although it is well known that the metabolism of chondrocytes can be altered by the application of mechanical strain, it is unclear whether chondrocytes from the superficial and deep zones of cartilage respond in a similar manner. In this study, chondrocytes from the uppermost 15-20% (superficial cells) and the remaining tissue (deep cells) from bovine articular cartilage were isolated separately and cultured in agarose constructs. Cell deformation on application of a 15% static compressive strain was identical for both subpopulations after 24 and 72 hours in culture. The constructs were incubated under static and dynamic (0.3, 1, and 3 Hz) strains of 15% amplitude. Glycosaminoglycan synthesis by deep cells was unaffected by static strain or 3 Hz dynamic strain, whereas 0.3 Hz produced a significant reduction and 1 Hz induced a highly significant 50% stimulation of glycosaminoglycan synthesis (p < 0.001). Superficial cells exhibited a general inhibition of glycosaminoglycan synthesis. By contrast, proliferation of superficial cells was stimulated by dynamic strain whereas deep cells were not influenced. It has been suggested previously that mechanotransduction-induced controls of glycosaminoglycan synthesis and proliferation in chondrocytes embedded in agarose are uncoupled. Data presented in this study demonstrate that the two processes do, in fact, occur in different subpopulations of chondrocytes within the full-depth cell isolate.

摘要

虽然众所周知,施加机械应变可改变软骨细胞的代谢,但尚不清楚软骨表层和深层区域的软骨细胞是否以相似方式做出反应。在本研究中,分别从牛关节软骨最上层15 - 20%(表层细胞)和其余组织(深层细胞)中分离软骨细胞,并在琼脂糖构建物中培养。培养24小时和72小时后,两个亚群在施加15%静态压缩应变时的细胞变形情况相同。构建物在15%振幅的静态和动态(0.3、1和3 Hz)应变下孵育。深层细胞的糖胺聚糖合成不受静态应变或3 Hz动态应变的影响,而0.3 Hz动态应变使其显著减少,1 Hz动态应变则诱导糖胺聚糖合成高度显著地增加50%(p < 0.001)。表层细胞的糖胺聚糖合成总体受到抑制。相比之下,动态应变刺激表层细胞增殖,而深层细胞不受影响。此前有人提出,在琼脂糖包埋的软骨细胞中,机械转导诱导的糖胺聚糖合成和增殖控制是解偶联的。本研究提供的数据表明,实际上这两个过程在全层细胞分离物中的不同软骨细胞亚群中发生。

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